Product Description
Rubber bushing/rubber stopper/rubber shock absorber is vulcanized with various of material, such as EPDM, NR,SBR etc.
With Good resistance to seasonality, heat resistance, chlorination resistance, aging resistance.
Inside stainless steel and It has a very good damping effect.
Are widely applied in any area, such as furniture, Chassis instrument etc
Production Description
| Item Name | Rubber bushing, ruubber stopper, rubber shock absorber |
| Bahan | EPDM,NBR,NR,SBR,PVC,EPT, PP/ABS |
| Color | Black, white, red,etc |
| Dimension | As client’s requirement |
| Hardness | 30~90ShA |
| Feature | High elasticity, insulation, abrasion resistance, oil resistance, aging resistance, high temperature resistance, cold resistance, anti-corrosion, anti-static |
| Application | Removable instruction,furniture,etc |
| OEM | welcome |
| MOQ | Meet your requirement |
| Certification | REACH, ROHS,FDA,SGS,etc |
The advantage and property of rubber bushing/rubber stopper/rubber shock absorber
1.We adopt heighten new technology craft
2.The material of rubber bushing is complete fresh and tasteless
3.Not fade, anti-slip wear-resistant anti – pressure , damping, acid and alkali resistant
4. Environment friendly
The different material of rubber bushing will cause different property.
EPDM/NBR/silicone/SBR/PP/PVC etc.
| Items | EPDM | NR | silicone | PVC |
| Hardness (Sha) |
30~85 | 30~90 | 20~85 | 50~95 |
| Tensile strength (Mpa) |
≥8.5MPa | > 20 Mpa | 3~8 | 10~50 |
| Elongation(%) | 200~550 | 1000% | 200~800 | 200~600 |
| Specific Gravity | 0.75-1.6 | 1.15-1.21 | 1.25~1.35 | 1.3~1.7 |
| Temperature range | -40~+120°C | -50~70ºC. | -55~+350°C | -29°C – 65.5°C |
1. the property of NR
It has good wear resistance, high elasticity, breaking strength and elongation, But in the air, it is easy to get age, and it is get sticky when it get in touch with heat, which is easy to expand and dissolve in mineral oil or gasoline, but it is resistant to strong acid, but not to Alkali . working temperature is -50~70ºC.
2. the property of EPDM
Weather ability, aging resistance, CZPT resistance, chemical stability are excellent, and CFCS and a variety of refrigerants. Working temperature is -50~150
3. the property of silicone
It has excellent heat resistance, cold resistance, CZPT resistance and atmospheric aging resistant.Good electrical insulation performance,The tensile strength and wear resistance are generally poor and has non- oil resistant. The working temperature is -55~250ºC
4. The property of NBR
Good oil resistance, heat resistance, abrasion resistance, solvent resistance and high – pressure oil,But it is not suitable for CZPT solvents, such as ketones, ozone, nitro-hydrocarbons, and chloroform. The working temperature is -40~120 ºC
5. the property of CR
It has good elasticity, wear resistance and atmospheric aging resistance. It is not afraid of violent distortion and flammability.Chemical stability. The working temperature is -40~100 ºC
6. The property of FKM
Excellent high temperature resistance,And have excellent chemical resistance, most oil and solvent (other than ketones and esters).cold resistance is not good.
About US
These years, We are working on various project of customers and long term working in rubber industry. We have faith in giving your professional advice on your particular project.
At present, our market have been expanded to more than 30 countries, and still growing.
First we will get drawing or sample from our client to check their design. If there is no drawing or sample, we will ask some question about product concept and design idea.
Then according to what application environment of rubber part, we will help design drawing and what raw material is best for rubber part. OEM parts are ok for us.
We can meet your requirement of the design and use for different shapes and material,
And high/low temperature, foam/sponge or CZPT rubber profile, fire resistance and special property of any rubber profile and molding rubber part
The advantage of our company
1.We have excellent complete production line with advanced production and test equipment
Adding First-class technicians, so that we can offer you the competitive price and high quality ,fast delivery time .
2.We have a special drawing design department to design the correct drawing data meeting your requirements. Then, we will use CAD or other format drawing to carry on tracking the production of tooling, sample ,mass goods. To avoid something wrong to each process. To make sure all of dimension are correct.
3.We also has special production supervision department. The engineer staff will Supervise each process from the manufacture of tooling to the production of mass goods.
Reduce something wrong happened, finally offer you parts meeting your technology requirement.
4. All of Raw material are past quality certification,In the meantime, we will first delivery test report of rubber part when all of mass goods are finished. And make sure the quality meet your requirement, then make shipment.
Packing and shipment
- one part is packaged with 1 plastic bag, then certain quantity of mounting are put into carton box.
- Carton box insider rubber mounting is with packing list detail. Such as, item name, the type number of rubber mounting, quantity of rubber mounting, gross weight,net weight, dimension of carton box,etc
- All of carton box will be put on 1 non-fumigation pallet, then all carton boxes will be wrapped by film.
- We have our own forwarder which has Rich experience in delivery arrangement to optimize the most economic and quickest shipping way, SEA, AIR, DHL, UPS ,FEDEX, TNT , etc.
- Why choose us?
- 1.Product: we specialize in rubber molding,injection and extruded rubber profile.
And complete advanced production equipment and test equipment
2.High quality:100% of the national standard has been no product quality complaints
the materials are environmentally friendly and the technology reaches the international advanced level
3.The competitive price:we have own factory, and the price is directly from factory. In additional,perfect advanced production equipment and enough staff. So the price is the best.
4.Quantity :Small quantity is available
5.Tooling:Developing tooling according to drawing or sample, and solve all of questions
6.Package: all of package meet standard internal export package, carton outside, inside plastic bag for each part; as your requirement
7.Transport:We have our own freight forwarder which can guarantee our goods can be delivered safely and promptly by sea or air
8.Stock and delivery:Standard specification,lots of stocks, and fast delivery
10. Service:Excellent service after-sales
- Common Questions
- What is the minimum order quantity for your rubber products?
- Answer:We didn’t set the minimum order quantity,1~10pcs some client has ordered.
- If we can get sample of rubber product from you?
- Answer:Of course, you can. Feel free to contact me about it if you need it.
- Do we need to charge for customizing our own products? And if it is necessary to make tooling?
- Answer: if we have the same or similar rubber part, at the same time, you satisfy it.
Well, you don’t need to open tooling
New rubber part, you will charge tooling according to the cost of tooling.
In additional,if the cost of tooling is more than 1000 USD, we will return all of them to you in the future when purchasing order quantity reach certain quantity our company rule - How long you will get sample of rubber part?
- Answer: Usually it is up to complexity degree of rubber part. Usually it take 7 to 10work days.
- How many your company product rubber parts?
- Answer:It is up to the size of tooling and the quantity of cavity of tooling. If rubber part is more complicate and much bigger, well maybe just make few, but if rubber part is small and simple, the quantity is more than 200,000pcs.
- Silicone part meet environment standard?
- Answer:Our silicone part are all high grade 100% pure silicone material. We can offer you certification ROHS and SGS, FDA .Many of our products are exported to European and American countries. Such as: Straw, rubber diaphragm, food mechanical rubber, etc.
- FAQ
1. Are you factory or trade company?
We specialize in manufacturing rubber and plastic manufacturer, founded in 2004
2. What’s the order process?
A: Inquiry—provide us all clear requirements, such as drawing with detail technical data, or original sample
B: Quotation—official quotation sheet with all detail specifications including price terms,shipment terms,etc
C: Payment terms—100% prepaid the cost of tooling before making new sample
T/T 30% in advanced, and the balance according to the copy of the B/L
D:Develop tooling—open the mould according to your requirement
E:Sample confirmation—send you the sample for confirmation with test report from us
F:Production—mass goods for order production
G:Shipping— by sea, air or courier. Detailed picture of package will show you.
3. What other terms of payment you use?
PayPal, Western Union
| Usage: | Agricultural, Industrial, Medical, Vehicle, Electronic, Household |
|---|---|
| Material: | EPDM, Nr, NBR, Silicone, PVC, FKM, Eptetc |
| Process Technology: | Molding or Injection |
| The Name of Enterprise: | Manufacturer |
| Certification: | FDA, SGS, Reach, RoHS, etc |
| OEM: | Welcome |
| Samples: |
US$ 0.3/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

Importance of Wall Thickness in Injection Molded Parts
When designing injection molded parts, it is important to keep the wall thickness uniform. Uneven wall thickness can lead to warping and sinking. To minimize these problems, injection molded parts should have a wall thickness of 40 to 60 percent of the adjacent wall. The thickness of the wall should also fit within the range recommended for the resin that is being used. If the wall thickness is too thick, it should be cored out. Unnecessary wall thickness alters the dimensions of the part, reduces its strength, and may require post-process machining.
Designing out sharp corners on injection molded parts
Designing out sharp corners on injection molded components can be a challenging process. There are several factors to consider that impact how much corner radius you need to design out. A general rule is to use a radius that is about 0.5 times the thickness of the adjacent wall. This will prevent sharp corners from occurring on a part that is manufactured from injection molding.
Sharp corners can obstruct the flow of plastic melt into the mold and create flaws on parts. They can also cause stress concentration, which can compromise the strength of the part. To avoid this, sharp corners should be designed out. Adding radii to the corners is also an effective way to avoid sharp angles.
Another common problem is the presence of overhangs. Injection molding parts with overhangs tend to have side-action cores, which enter from the top or bottom. As a result, the cost of making these parts goes up quickly. Moreover, the process of solidification and cooling takes up more than half of the injection molding cycle. This makes it more cost-effective to design parts with minimal overhangs.
Undercuts on injection molded parts should be designed with a greater radius, preferably one or two times the part’s wall thickness. The inside radius of corners should be at least 0.5 times the wall thickness and the outside radius should be 1.5 times the wall thickness. This will help maintain a consistent wall thickness throughout the part. Avoiding undercuts is also important for easy ejection from the mold. If undercuts are present, they can cause a part to stick inside the mold after it has cooled.
Keeping wall thickness uniform is another important issue when designing plastic parts. Inconsistent wall thickness will increase the chance of warping and other defects.
Adding inserts to injection molded parts
Adding inserts to injection molded parts can be a cost-effective way to enhance the functionality of your products. Inserts are usually manufactured from a wide range of materials, including stainless steel, brass, aluminum, bronze, copper, Monel, nickel/nickel alloy, and more. Selecting the right material for your parts depends on the application. Choosing the correct material can help prevent defects and keep production cycles short. The insert material should be durable and resist deformation during the injection molding process. It must also be thin enough to provide the desired grip and have a proper mold depth.
The benefits of adding inserts to injection molded parts include the ability to design parts with unique shapes. These parts can be aesthetically pleasing, while still remaining durable and resistant to wear and tear. In addition, insert molding allows products to have a good external finish. In addition to being cost-effective, insert molding is considered a more efficient manufacturing method than other conventional methods.
Adding inserts to injection molded parts is an excellent way to enhance the strength and performance of your products. There are many different types of inserts, including threaded nuts, bushings, pins, and blades. Some types are even available with knurled outer surfaces that help them adhere to plastic.
In addition to being cost-effective, insert molding is environmentally friendly and compatible with many types of materials. Typical inserts are made of metal or plastic. Depending on the application, stiffening inserts may also be made from wood.
Importance of uniform wall thickness
The uniformity of wall thickness is an essential factor in the plastic injection molding process. It not only provides the best processing results, but also ensures that the molded part is consistently balanced. This uniformity is especially important for plastics, since they are poor heat conductors. Moreover, if the wall thickness of an injection molded part varies, air will trap and the part will exhibit a poorly balanced filling pattern.
Uniform wall thickness also helps reduce shrinkage. Different materials have different shrinkage rates. For instance, thick parts take longer time to cool than thin ones. As the part’s thickness increases, cooling time doubles. This relationship is due to the one-dimensional heat conduction equation, which shows that heat flows from the center of the part toward the cooling channel. However, this relationship does not hold for all types of plastics.
The general rule for maintaining uniform wall thickness in injection molded parts is that walls should be no thicker than 3mm. In some cases, thicker walls can be used, but they will significantly increase production time and detract from the part’s aesthetic appeal and functionality. Furthermore, the thickness of adjacent walls should be no thicker than 40-60% of each other.
The uniformity of wall thickness is critical to the overall quality and efficiency of the injection molding process. An uneven wall thickness can cause twisting, warping, cracking, and even collapse. A uniform wall thickness also reduces residual stress and shrinkage. Injection molded parts are more stable when the wall thickness is uniform.
An injection molded part with thick walls can be problematic, especially when the molded parts are shaped like a cube. A non-uniform wall thickness can result in problems and costly retooling. Fortunately, there are solutions to this problem. The first step is to understand the problem areas and take action.
Using 3D printing to fabricate molds
The use of 3D printed molds allows manufacturers to manufacture a wide range of injection molded parts. However, 3D-printed molds are not as strong as those made from metallic materials. This means that they do not withstand high temperatures, which can degrade them. As such, they are not suitable for projects that require smooth finishing. In order to reduce this risk, 3D-printed molds can be treated with ceramic coatings.
Using 3D printing to fabricate injection molds can help reduce costs and lead times, allowing manufacturers to bring their products to market faster. This process also has the advantage of being highly efficient, as molds made using 3D printing can be designed to last for many years.
The first step in fabricating an injection mold is to design a design. This design can be complex or simple, depending on the part. The design of the mold can be intricate. A simple example of a mold would be a red cup, with an interior and exterior. The interior portion would have a large cone of material protruding from the other side.
Injection molding is an effective way to produce thousands of parts. However, many engineering companies do not have access to expensive 3D printers. To solve this problem, companies should consider using outside suppliers. In addition to speeding up the manufacturing process, 3D printing can reduce the cost of sample parts.
Plastic injection molding still remains the most popular method for high volume production. However, this process requires a large up-front capital investment and takes a while to adapt. Its advantages include the ability to use multiple molds at once, minimal material wastage, and precision dosing. With an increasing number of materials available, 3D printing can be a smart option for companies looking to manufacture a variety of plastic parts.

editor by CX 2023-05-06
China Custom Custom PC PS Injection Molded Parts injection mold for parts
Product Description
Product Description
Plastic injection molding is an extremely versatile method of producing CZPT and has multiple advantages over other methods of plastic molding. Not only is the process simpler and more reliable than others methods, but it is also extremely efficient.
|
Bahan |
Nylon+Glass Fiber,GF-ABS,POM,PP,PC,PA66, Acrylic, HDPE, UHMW-PE, etc. |
|
Process |
Injection molding ,CNC machining ,Extrusion process,Vulcanization. |
|
Surface |
Matted/Smooth, as clients’ request |
|
Size |
As same as drawing or as samples |
|
Color |
Nature /White/Black/Yellow/Red/Blue |
|
Application |
Industry : Packing machines/Filling /beer machines /Conveyor equipment ,Mine Equipment etc. |
|
Molding type |
General Molding,Insert Molding, Over Molding ,Double color molding |
|
Cavities |
Simple, Multi -cavities(10-40) |
|
Price |
Advantaged prices ( Direct from our factory) |
|
Sample |
Free sample supply |
|
Molding time |
15-25days |
|
Delivery time |
7-15days after sample quality confirmed |
|
Transportation : |
We Cooperate with Fastest Express 3-5days time such as DHL,Fedex,UPS,SF-express, EMS etc and best forwarder by sea . By Train along One Belt One Road to Europe within 20days. |
|
Our Service |
We provide mold design,precision plastic mold making,custom best quality plastic injection molding,Assembly Work, Pad Printing, |
|
Service and Advantage |
1.OEM ODM service,Replacement parts |
Our Advantages
* Fast production and highly efficient.
Injection moulding can produce an incredible amount of parts per hour. Speed depends on the complexity and size of the mould, anywhere between 15-120 seconds per cycle time.
* Low labour costs.
Plastic injection moulding is an automated process whereby a majority of the process is performed by machines and robotics, which a sole operator can control and manage. Automation helps to reduce manufacturing costs, as the overheads are significantly reduced.
* Design flexibility.
The moulds themselves are subjected to extremely high pressure. As a result, the plastic within the moulds is
pressed harder and allows for a large amount of detail to be imprinted CZPT the part and for complex or intricate shapes to be manufactured.
* High-output production.
Thousands of parts can be produced before the tooling needs to be maintained.
* Product consistency.
Injection Moulding is a repeatable process; in other words, the second part you produce is going to be identical to the first 1 etc. This is a huge advantage when trying to produce high tolerances and part reliability in high volumes.
* Low scrap rates.
Injection moulding produces very little post-production scrap relative to traditional manufacturing processes.
Any waste plastic typically comes from the sprue and runners. Any unused or waste plastic, however, can be reground and recycled for future use.
Production Process
Application Areas
Household utility ware,
auto components,
Computer electronics,
Electronics components,
Marketing samples,
Medical & dental products,
Model shops, toys, hobby,
New product design & development,Furniture Design,Civil Engineering,Construction,
Marine Industry,
Garden Products,
Company Profile
HangZhou CZPT Composite Materials Co., Ltd. is located in the Economic Development Zone of HangZhou City, ZheJiang Province, it is 1 of the earliest companies engaged in composite materials, engineering plastics, rubber and plastic products.
Company’s main products: POM, MC Nylon, Oil Nylon, HDPE, ABS, PBT, PET, PVC, PC, PU, PP, PTFE, PVDF, PEI, PSU, PEEK, PAI, PI, PBI.Utra high molecular weight polyethylene board (UHMW-PE), UPE rod, oily nylon products, PVC board, polyethylene nylon processing parts, wear-resistant materials and so on. Large-scale enterprises that produce various processes such as molding, injection molding, and pultrusion one.
Products are widely used in steel, mining, power, port, paper, food, chemical, textile and other industries.
Packaging & Shipping
Packing Details : Inner plastic bag,outside carton box,last is the pallet,all are based on the customers’ requirments.
Delivery Details : 10-30 days after you confirm the samples.
FAQ
1. Q: Are you trading company or manufacturer ?
A: We are manufacturer.
2. Q: How long is your delivery time?
A: According to the difficulty and quantity of product processing,a reasonable arrival time will be given to you.
3. Q: Do you provide samples ? is it free or extra ?
A: Yes, we could offer the sample for free charge but do not pay the cost of freight.
4. Q: Can you do assembly and customized package for us?
A: We have an assembly factory and can assemble all kinds of plastic, metal and electronic parts for you. For the finished
products,we can customized the retail package and you can sell it directly after receiving them.
| Shaping Mode: | Plastic Injection Mould |
|---|---|
| Design Service: | According to The Customer Requirement |
| Color: | Based on Customer Requirement |
| Drawing Format: | Step., Igs., X_T, Dwg, Pdf, etc. |
| Service: | OEM |
| Payment Details: | T/T, L/C, Western Union |
| Samples: |
US$ 0.1/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

Benefits of Injection Molded Parts in Design
Injection molded parts are manufactured from a variety of plastics. You can order samples of your desired product or download CAD drawings free of charge. For more information, visit our product catalog. There are numerous benefits of using injection molded products in your designs. Here are some of them. Injection molded products are cost-effective and highly customizable.
Design for manufacturability
Design for manufacturability (DFMA) is an important part of the design process for injection-molded parts. This process helps to minimize costs and streamline the production process. It also helps in the prevention of problems during the manufacturing process. The process involves several steps that include part geometry, location of critical surfaces, material selection, and dimensioning. It is also crucial to consider the colors and tolerances, which can help to minimize scrap rates.
Design for manufacturability is a vital early stage in the development process to ensure that the product is cost-effective and repeatable. It begins with a thorough understanding of the purpose for which the part is intended. The design process should take into account every aspect of the part, including the material section, tool design, and the production process.
DFM includes guidelines to ensure that the design meets the manufacturing requirements. These guidelines can include good manufacturing practices, as well as good design principles. Good design focuses on the quantity and quality of parts, as well as the complexity of their surfaces and tolerances. The process also focuses on mechanical and optical properties.
Injection molding design for manufacturability can save resources and time. It also reduces the costs of assembly. An injection molder conducts a detailed analysis of these design elements before starting the tooling process. This is not a standalone principle; it should be used in conjunction with other design optimization techniques.
Ideally, a product should be designed for optimum manufacture. This means that it should not have too many parts, or too few. To minimize this, the designer should choose a model that is easy to mold. Also, a design that does not require too many machine operations and minimizes risks.
Plastics used in injection molding
Injection molding is a very versatile process that uses various types of plastic polymers. These plastics are extremely flexible and can be molded to take on any shape, color, and finish. They can also be customized to contain design elements, text, and safety instructions. Plastics are also lightweight, easily recycled, and can be hermetically sealed to prevent moisture from getting into the product.
Plastics are categorized according to their properties, which can be helpful in selecting the right plastic for a particular application. Different materials have different degrees of hardness, which is important when it comes to molding applications. Some are harder than others, while others are more flexible. Plastics are ranked according to their Shore hardness, which was developed by CZPT.
Polystyrene is one of the most common plastics used in injection molding. However, it has a few disadvantages. While it is a good choice for simple products that do not require high strength and are prone to breakage, it is not ideal for items that need to be resistant to heat and pressure.
While many types of plastics are used in injection molding, choosing the right material is very important. The right material can make a big difference in the performance of your product and the cost of your product. Make sure to talk with your injection molding supplier to determine which plastic is right for your project. You should look for a plastic with a high impact rating and FDA approval.
Another commonly used plastic is PMMA, or polystyrene. This plastic is affordable and has a glass-like finish. It is often used for food and beverage packaging and can be easily recycled. This material is also used in textiles.Characteristics of polypropylene
Polypropylene injection molded parts offer an array of benefits, including a high degree of rigidity, excellent thermal stability, low coefficient of friction, and chemical resistance. These plastics are available in two main types, homopolymers and copolymers. Both types offer superior hardness and tensile strength. However, the material does not have the same fire-resistance as PE plastics.
Polypropylene is a colorless, odorless, crystalline solid. It is highly resistant to a variety of chemicals and is shatter-resistant. Its properties make it a great choice for many industrial applications, including packaging and containers for liquids. The material is also highly durable and can last for a very long time without breaking. In addition, it does not absorb or retain moisture, making it ideal for outdoor and laboratory applications.
Polypropylene is widely used for injection molding, and its low cost, flexibility, and resistance to chemical attack make it a popular choice. This material is also a great electrical insulator and has excellent thermal expansion coefficient. However, it is not biodegradable. Luckily, it can be recycled.
During the molding process, the temperature of the mold is a significant factor. Its morphology is related to the temperature and flow field, and a clear correlation between the two factors is essential. If you can control the temperature and flow, you can optimize your manufacturing process and eliminate costly trial-and-error procedures.
Polypropylene is an excellent electrical insulator and has a high dielectric coefficient. It can also be sterilized and resist high temperatures. Although it is less rigid than polyethylene, it is a good choice for applications where electrical insulation is necessary.
Texture of injection molded parts
Texture design is a common feature of injection molded parts, which helps to raise the perceived value of the vehicle. While traditional manufacturing processes can produce limited textures, additive manufacturing allows for infinite designs. For example, a design that looks like a wood grain pattern may be printed on an aluminum car part.
Texture is important because it can improve the strength of the part and enhance its adhesion to other surfaces. Moreover, textured parts can resist damage from contact and fingerprints. This makes them more durable and a good option for further molding operations. Injection molding processes usually follow a set of standards from the Society of Plastics Industry, which define different types of surface finishes.
Textured plastic injection molded parts may have various types of surfaces, including wood grain, leather, sand, or stipple. Choosing the right surface texture is crucial for enhancing the appearance of the part, but it must also be compatible with its function. Different materials have different chemical and physical properties, which can influence the type of texture. Moreover, the melting temperature of the material is important for its surface finish. The additives used in the process can also have an impact on the surface finish.
Texture can also vary between manufacturers and types of components. Some textures are flat, while others are rough. The top row corresponds to A3 and B4 in flatness, while the bottom row shows rough surfaces. These rough surfaces may damage sensitive testing equipment. However, some textures may have near equivalence with each other, namely SPI D-3 and MT-11020.
The type of texture that is applied to injection molded parts can affect the minimum draft angle required for the parts to be ejected. Parts with light texture tend to be smoother than parts with heavy textures, while parts with heavy textures require a higher draft angle. The draft angle for heavy textures should be between five and 12 degrees. It is best to consider this early in the design process and consult with the injection molder to get a good idea of the necessary draft angles.

editor by CX 2023-05-05
China Hot selling One Stop Injection Molding Companies ABS/PP/PA6/POM Custom Made Plastic Injection Molded Parts injection moulding electrical parts
Product Description
Produt Description
| Product Name | One stop injection molding companies ABS/PP/PA6/POM custom made plastic injection molded parts |
| Bahan | ABS/PE6/PE66/PVC/PC/PP/POM etc |
| Performance | UV resistance, flame retardant, low temperature resistance, flexible/rigid etc |
| Application | Industial, electronics etc |
| Mold Life | 100,000-500,000 shots |
| Mold Cavity | Single cavity, multi cavity, based on customer’s request |
| Mold Runner | Hot runner/ Cold runner |
| Product Surface Treatment | Painting/ Polishing/ Laser Carving/ Screen Printing/ UV Printing/ Mirror Finishing/ Electroplated/ Oxidation/ Sand Blasting/ Passivating |
| Injection Molding Capability | 1-5000g |
| MOQ | Negotiable |
| Packing | Standard export carton packing, or according to customer’s request |
| Parameters | Inch, centimeter, millimeter etc |
| OEM/ODM | Warm welcome to contact us |
| Advantages | Competitive price & Fast Delivery & Good quality |
| Payment Terms | For mold: 50% advanceT/T payment, balance will be after you confirm our samples; For production: 30%T/T, balance will be after received our B/L copy |
Products Show
Detailed Products
PLEASE NOTE:
These products belong to our customers. We just show them to display our ability, not in sale!
Warm welcome to your customization!
Packing
The way of packing depends on customer’s requirement.
Company Profile
Our company was established in 2003. We are oem service manufacturer and trader specialized in research. We are located in Xihu (West Lake) Dis. County, ZHangZhoug Province, with convenient transportation access. Our annual sales value is over USD 800,000.
With more than 10 years’ development, we have established CZPT business relationships with customers from Western Europe, Northern Europe, South America and North America.
We can consistently provide high quality products, reasonable prices and the best services for our clients. We develop and produce many kinds of plastic products, such as automobile parts, machinery fitting, home appliance, electronic products, electric appliance, computers, miniature switches, architecture and so on. We can produce Injection Molding Products and Plastic Extrusion Profiles. We produce according to clients’ sample or drawing.
We can use many materials to produce, such as ABS, PP, PE, PS, PVC, PC, PBT, POM, PET, LDPE, TPE and so on.
If you are interested in any of our products or would like to discuss a custom order, please feel free to contact us. We are looking CZPT to forming successful business relationships with new clients in the near future.
Our Advantages
Engineering capabilities:
- Totally use high performance raw materials for production
- Assembled Plastic Components
- Metal part pressed-in or Inserts Plastic parts
- Specialty Surface Finishes
- Lapping
- 3D printing for customer design testing
- Custom Packaging
- Several extra parts are free for customer
- Has a metal parts workshop to offer metal parts.
Partner:
Our products have been sold to famous companies in China, European and export many countries, such as the USA, Canada, Germany, the Netherlands, India, Saudi Arabia and so on.
We are warm welcome and we will take care for the every inquiry. We always aimed to trace the customer first, quality first! We will pay great attention reply every inquiry.
We are looking CZPT to forming successful business relationships with new clients in the near future.
Please feel free to contact us. We believe we will be your good business partner!
FAQ
1. Who are you?
We are based in ZHangZhoug, China from 2003, selling to Southern Europe(20.00%), Domestic Market(20.00%), North America(15.00%), Western Europe(15.00%), Eastern Asia(10.00%), Oceania(10.00%), Northern Europe(5.00%), Eastern Europe(5.00%).
2. How can you guarantee quality?
Always a pre-production sample before mass production;
Always final Inspection before shipment;
3.What can I buy from you?
Customized Plastic Injection Molding Parts, Customized Plastic Extrusion Profiles.
4. Why should I buy from you not from other suppliers?
We can provide high quality products, reasonable prices, on-time delivery and the best services.
5. What’s your general lead time for mold and mass production?
Generally 20-25 days for molding, mass production depending on order qty.
6.If the items we purchase from your company are not of perfected quality/defective, what can we do?
Pls contact with us freely within a week after your got the products. Kindly send us photos of all the bad goods or any proof. After confirmation, we can replace/ refund/ deduct the fee from next order.
|
Shipping Cost:
Estimated freight per unit. |
To be negotiated |
|---|
| Material: | ABS |
|---|---|
| Application: | Electronics, Automotive |
| Service: | OEM |
| Samples: |
US$ 1/Piece
1 Piece(Min.Order) | Order Sample |
|---|
| Customization: |
Available
| Customized Request |
|---|

Designing Injection Molded Parts
Injection molded parts are a great way to produce fast, reliable parts without having to spend much time on post-processing. Whether you’re designing a small component or a large vehicle, you can expect your parts to be ready to use right away. Because of their high-speed production cycles, you can expect your parts to be delivered within 30 to 90 seconds.
Design considerations for injection molded parts
When developing a medical device, there are several design considerations to be made to create a quality injection molded part. Typically, product designers want to minimize the amount of material needed to fill the part while still maintaining the structural integrity of the product. To this end, injection molded parts often have ribs to stiffen the relatively thin walls. However, improper placement of ribs or projections can create molding problems.
Design considerations for injection molded parts include the overall shape and finish of the part. There are several ways to make the part look better. One way is to make the surface smoother and less pronounced. This will help the material flow evenly throughout the mold and minimize the risk of parting lines. Another way to reduce the risk of sink marks is to reduce the thickness of ribs relative to the nominal wall thickness of the part.
A common problem encountered when designing injection molded parts is sink marks. These can be difficult to avoid. A molder may not be willing to guarantee the product’s surface is sink-free, so designers must make sure that sink marks are minimized. To prevent these problems, the design of the parts should be as simple as possible.
Injection molded parts can also have complex geometries, and the design process is incredibly flexible. A good molder will be able to reproduce complex parts at low cost. To get the best possible results, designers should discuss the design and process with the molder. They should also discuss with the molder any critical tolerance specifications. The designer should also consider reworking the mold if necessary.
The wall thickness of a plastic injection molded part should be consistent. This is important because it influences the part’s functionality and performance. An uneven wall thickness can result in sink marks, voids, and other undesirable effects. It may also result in excessive plastic pressure or cause air traps.
Materials used in injection molded parts
When designing a product, materials used in injection molding are an important factor in the end result. These materials vary in strength, reusability, and cost. Understanding these differences is essential for ensuring the best product. In addition, understanding the characteristics of these materials can help you plan your budget and determine which ones are right for your application.
Choosing the wrong material can have serious consequences. In addition to premature component failure, the wrong choice can also increase your cost. To avoid such an occurrence, it’s a good idea to seek expert advice. Expert consultations can help you understand the factors that are important for your particular plastic molding project.
Fortron PPS: This thermoplastic resin offers excellent strength, toughness, and chemical resistance. It’s also stiff and durable, which makes it ideal for demanding industrial applications. Other common plastics include Nylon 6/6, which is strong and lightweight. Its high melting point makes it a great replacement for metal in certain environments. It also offers desirable chemical and electrical properties. PEEK is another common material used in injection molding.
ABS: Another engineering grade thermoplastic, ABS offers excellent heat resistance and chemical resistance. The disadvantage of ABS is its oil-based composition. As a result, ABS production creates noxious fumes. Nylon is another popular plastic for injection molding. Nylon is used in many different applications, from electrical applications to various kinds of apparel.
Injection moulding is a process where raw material is injected through a mold under high pressure. The mold then shapes the polymer into a desired shape. These moulds can have one or multiple cavities. This enables manufacturers to create different geometries of parts using a single mould. Most injection moulds are made from tool steel, but stainless steel and aluminium are also used for certain applications.
Characteristics of injection molded parts
Injection molded parts exhibit a range of mechanical and physical properties. These properties affect the performance of the parts. For example, they can affect electrical conductivity. Also, the degree of filling in the parts can determine their mechanical properties. Some studies have even found that filling content can affect the dimensional accuracy of the parts.
To ensure the highest quality of the molded parts, it is important to inspect the machines and processes used to manufacture them. Proper maintenance can prevent mistakes and prolong the service life of the components. Moreover, it is essential to clean and lubricate the machine and its components. This will also reduce the possibility of mold errors.
The temperature and pressure characteristics of the injection mold can be characterized with the help of a simulation tool. For example, in a simulation environment, the injection pressure can be set as a profile and is equal to the pressure in the flow front. Moreover, the maximum injection pressure can be set as a value with minimum dependence on the flow rate. The temperature of the material used in the injection mold should be within a recommended range.
The temperature and pressure of the mold cavity must be monitored to ensure proper ejection. The temperature of the injection mold cavity is usually set at a temperature slightly above the ejection temperature. This can be manually or automatically. If the temperature is too high, the part will not be able to eject. The rapid temperature change can cause the part to warp. The same applies to the cooling time of the mold and cavity.
The thickness of the molded part should be uniform. If the injection mold does not conform to the required thickness, sink marks may be visible. A minimum of 2.5 mm between the outer and inner diameters is required for proper ejection.
Common problems encountered
There are several common problems encountered during the production of injection-molded parts. One of the most common of these is sink marks. These appear on the surface of the part and are a result of uneven cooling of the plastic within the mold. This problem can be caused by poor mold design, insufficient cooling time, and/or low injection pressure.
The first common problem occurs when the mold is not tightly clamped. This causes the molten plastic to be forced out of the mold. Other problems may occur due to the wrong clamping pressure or temperature. In these cases, the clamping force should be increased or the mold design should be revised to allow the plastic to flow properly through it. In addition, a poor quality mold may cause flash or burrs.
Another common problem is wavy patterning. These two defects can affect the appearance and functionality of the part. To avoid these problems, work with an experienced injection molding manufacturer who has experience in these types of parts. They will be able to troubleshoot and minimize any potential risks.
One of the most common problems encountered in injection molding is discoloration. A discolored part will be black or rust-colored. This problem is caused by an excess of air in the mold cavity, and can be avoided by reducing the injection speed. Ventilation systems can also be adjusted to minimize the chances of these problems.
Defective molds can cause a negative impact on the bottom line. By understanding the common problems encountered during injection molding, you can better avoid these problems and make your products as attractive as possible.
Fasteners used in injection molded parts
Injection molded parts often use fasteners for securing fastener elements in place. As shown in FIGS. 7 and 8 (two separate views), the fastener elements are integrated with the molded product, and they extend from one side. The fastener elements are designed to engage loop elements in the overlying layer. The palm-tree shaped fasteners are especially well-suited for this purpose, as their three-dimensional sides engage more loops than flat sides. These features result in a more secure closure.
When fasteners are used in injection molded parts, the plastic is injected into a mold, with the fastener integrated. In addition to self-tapping screws, other plastic fasteners can include moulded or pre-drilled pilot holes. This method avoids the need for a secondary assembly step and ensures an easy fit. These screws also have other advantages, including a smaller thread profile and lower radial stress, which prevents boss damage.
Another type of fastener commonly used in injection molded parts is a boss. This type of fastener is typically larger than the nut and the pilot hole. An undersized boss can lead to warpage during the injection molding process and cause a product to fail in the field.
Another type of fastener used in injection molded parts is a thread insert, which is usually a stainless steel A2 wire. There are different versions of this fastener for different materials, including carbon fiber reinforced plastic. And the fastener can be modified to adjust the size of the hole.
These fasteners are used in many different types of injection molded parts. Some parts are used to fix a variety of cosmetic issues, such as minor sinks. While these are not defects, they may not look perfect, and they can affect the overall appearance of a product. If you want to improve the appearance of an injection molded part, you can add fibers and glass fibers, as well as colorants.

editor by CX 2023-04-28
China manufacturer Custom ABS Plastic Injection Parts Molded Casing Parts High Precision CZPT Made by ABS/PP/POM/PC/Nylon injection moulding of parts
Product Description
Introduction
As a leading plastic injection molding company, Moldor Plastic has achieved rich experiences of design, engineering, and manufacturing value-added plastic mold and supplying molded products to customers all over the world. Equipped with state of the art machines and skilled workers, we provide you the high-quality products at very competitive price.
Our CZPT are widely used in Auto Accessories, Electronics, Household appliances, Medical Devices, Game Players, Mechanical devices and other fields.
QUALITY FIRST & SERVICE FIRST & CUSTMER FIRST is our aim,MAKE EVERY PROJECT A SUCCESS is our mission.We sincerely hope to be your trustworthy partner for long-termcooperation.
Product Details
| Mold Shaping | Customized Plastic Injection Molding |
| Plastic Material | PP, PC, PS, POM, PE, ABS, etc. as per customers’ requierment |
| Surface Finish | Mirror Polish, Texture, Sandblast, Mate, Spray Paint, Silk screen and etc. |
| Plastic Material | PP, PC, PS, POM, PE, ABS, etc. as per customers’ requierment |
| Delivery Time | 5-8 days after samples confirmed |
| Color | Provide Pantone Color Code or sample |
| Packaging | Standard Export Carton |
Custom Your Own CZPT in CZPT !
According to your drawings or samples, we can provide one-stop solutions service from designing, prototyping, molds
making, processing, spraying, assembling, inspecting, packaging to delivering, everything will be managed to the
smallest detail.
If you have products or ideas that require injection mold & molding, CZPT would like to serve you. Our knowledgeable engineers and designers will offer suggestions on how to manufacture your product to allow for a professional
look as well as for ease of manufacturing.
Please kindly email us your inquiry, and our professional team is committed to providing personal service at the
lowest possible prices to you.Your any inquiry is welcomed and will be replied soon.
1. Manufacturing experience for over 15 years.
2. Customized designs and services are accepted.
Professional design team and engineering team offer
technical support.
3. Manufacturing process control.
4. Small volume production or mass production is available.
5. Trained workers and professional QC team to assure the
product quality.
6. Inspection report and material test certificates are
available CZPT requests.
7. Standard: HASCO or as customer’s requirement.
……
Step 1: Product Design: We provide product design service as customers’ request.
Step 2: Mold Design: We communicate & exchange the detail information with our customers to make a good mold design.
Step 3: Mold Making: Manufacturing in-house, we send the mold processing photos and videos to customers.
Step 4: Mass Production: We start plastic injection parts production after customers confirm samples.
Step 5: Assembly: We can supply assembly service as customers’ requests.
Step 6: Value added Service: Available, such as screen printing, plating, custom packaging and etc.
Why Us
Packaging & Shipping
FAQ
Q1:Are you a trading company or factory?
A1:We are factory.
Q2:What type of information is required for quoting a molding project?
A2:Please send your drawings or sample to us.
Q3:How long do you take to build a mold?
A3:The production timeline depends on your specific needs, normally the lead time is 25-45days.
Q4:How small or large of a plastic part will you produce?
A4:Our machine capabilities cover a range from 60-ton to 500-ton clamping forces.
Q5:What kind of steel do you use for plastic moldings?
A5:We can use any type of steel appointed by customer or popular in the market.Such as P20,718,8407,NAK80,H13,S136,
DIN 1.2738,DIN 1.2344,etc.
Q6:What types of materials can be molded by your injection products?
A6:Polystyrene,ABS,PET,TPR,TPU,PVC,Nylon,Acetal,Polypropylene,Polyethylene, Polycarbonates and etc.
Q7:Do you offer secondary service such as assembly, packaging or painting?
A7:Yes,such as assembly, painting, tapping, ultrasonic welding, trimming, sorting, customized packaging and etc.
Q8:If I have an existing tooling, could you use it to mold my project?
A8:Most certainly, if existing tooling is available, we can use them.
Q9:Can you mold around inserts or metal components?
A9:We can do insert molding with just about any metal and non-metal components.
| Plastic Type: | Thermoplastic |
|---|---|
| Plastic Form: | Granule |
| Molding Method: | Injection Molding |
| Plastic Color: | Black, Red, Yellow, White, or Others |
| Mold Runner: | Cold or Hot Runner |
| Surface Finish: | Polish, Texture, Matt, Smooth, Can Be Customized |
| Customization: |
Available
| Customized Request |
|---|

Designing Injection Molded Parts
Designing injection molded parts involves careful consideration of various parameters, including the wall thickness and draft angle. These factors are essential for a strong, durable part. Improper wall thickness can lead to sinking and warping defects. To avoid these issues, ensure that the walls of your injection-molded parts have a uniform thickness that does not vary too much from the rest of the part.
Designing out sharp corners in injection molded parts
When designing an injection molded part, it’s important to consider the corner radius. Sharp corners will create more stress, and this will lead to weak spots and cracks. Creating a radius around the corner helps distribute stress evenly and allows easier material flow and part ejection. Additionally, sharp corners in a mold can collect contaminants and create defects, including surface delamination.
Sharp corners in injection molded parts are a common source of stress and can cause the part to become damaged during the manufacturing process. In addition to trapping air, sharp corners may also lead to localized high temperatures that degrade the part. To reduce these risks, consider adding radii to all sharp corners.
Another important design factor to consider is wall thickness. Parts that have a smooth transition between sections should be designed with a minimum of five millimeters of wall thickness. Anything thicker will increase production cycle time and may also negatively impact mechanical properties. The use of fillets and chamfers can also help avoid these problems.
Designing out sharp corners in injection molded components can prevent costly problems from occurring during the manufacturing process. While the process is simple and straightforward, it needs to be done correctly to ensure quality. By following best practices, designers can ensure their parts won’t develop any problems or sink, warp, or voids. A poor design can also cause damage to the mold, which can cost thousands of dollars and hundreds of hours to redesign.
When designing injection molded parts, designers should consider the following guidelines. Incorporate internal and external radiuses. The internal radius (also called a fillet radius) is designed into the mold for improved quality and strength during the molding process. This radius is typically located on the inside corners or the bottom of a compartment. It can also be used for connecting walls and ribs. An external radius, on the other hand, is known as a round radius.
A right-angled part with sharp corners has a tendency to be loaded by pushing the vertical wall to the left. This creates a high-level of molded-in stress in the part. The resulting part may be weaker than expected because of the increased stress on the corner.
Importance of uniform wall thickness
Uniform wall thickness is a critical factor when designing injection-molded parts. This ensures that molten polymers can flow efficiently throughout the part. Additionally, it facilitates ideal processing. Varying wall thickness can cause problems during molding, such as air trapping, unbalanced filling, and weld lines. To ensure that your injection-molded parts are uniform, consult a plastic injection molding company that specializes in uniform wall thickness.
Injection-molded parts are more durable when the walls are uniform. A thin wall reduces the volume of material used in the part. However, thin walls can break during ejection. In addition, thin walls increase the possibility of voids. To prevent such problems, use larger machines that can produce parts with uniform wall thickness. This way, parts are easier to handle and ship.
Another important factor is the presence of gussets. These are support structures that stick out from a part’s surface. Gussets are useful for preventing warping, because they provide rigidity to thin unsupported sections. For this reason, gussets are essential when designing an injection-molded part.
Uniform wall thickness is especially critical in parts that have bends or rims. A uniform thickness helps maintain the mechanical strength and appearance of a part. However, this can be tricky as you may need to balance optical properties with mechanical ones. At Providence, we have the experience to help you navigate these challenges and produce quality parts.
Proper wall thickness is important for many reasons. It can affect both cost and production speed. The minimum wall thickness for injection molded parts depends on the part size, structural requirements, and flow behavior of the resin. Typically, injection molded parts have walls that are 2mm to 4mm thick. However, thin wall injection molding produces parts with walls as thin as 0.5mm. If you’re having trouble choosing the right wall thickness, consult an experienced injection molding company that can help you determine the appropriate wall thickness for your part.
Uneven wall thickness causes problems during injection molding. The uneven wall thickness may make the material flow through the part too quickly, or it may cause it to cool too slowly. This can lead to warping, twisting, or cracks. Even worse, uneven wall thickness can cause parts to become permanently damaged when they are ejected from the mold.
Importance of draft angle
Draft angles are an important part of design for injection molded parts. These angles are necessary because friction occurs on surfaces that come into contact with the mold during the molding process. A part with a simple geometry would only require a single degree of draft, but larger parts would need at least two degrees.
Almost all parts requiring injection molding will require some amount of draft. The better the draft, the less likely the parts will have a poor finish and may bend or break. Furthermore, parts with inadequate draft will take longer to cool, extending cycle times. Moreover, if the parts are too thick or have too little draft, they may become warped.
Having a draft angle in injection molding is very important, especially if the mold has sharp corners. Without it, parts will come out scratched and will shorten the life of the mold. In some cases, parts may even not be able to eject from the mold at all. To prevent this, air needs to be allowed to get between the plastic and metal. This allows air to escape and prevents warping during ejection.
The importance of draft angle is often overlooked in the design process. Adding this angle to the mold can help prevent problems with mold release and reduce production costs. A draft angle will also allow parts to release from the mold more easily and will lead to better cosmetic finishes and fewer rejected parts. Additionally, it will reduce the need for costly elaborate ejection setups.
Draft angle should be added to the design as early as possible. It’s crucial for the success of the injection molding process, so it is best to incorporate it early in the design process. Even 3D printed parts can benefit from this detail. The size of the draft angle is also important, especially for core surfaces.
A draft angle can be large or small. The larger the draft angle, the easier it is to release the mold after the mold is completed. However, if the draft angle is too small, it can lead to scrapes on the edges or large ejector pin marks. Draft angles that are too small can lead to cracks and increase mold expenses.
Cost
There are many factors that contribute to the cost of injection-molded parts, including the material used for the mold and the complexity of the design. For example, larger parts will require a larger injection mold, which will cost more to manufacture. Additionally, more complex parts may require a mold with special features. Mold makers can advise you on how to design your part in order to reduce the overall cost of an injection-molded part.
One of the biggest costs related to the production of injection molded parts is the cost of the tooling. Tooling costs can reach $1,000 or more, depending on the design, materials, and finishing options. Tooling costs are less if the part quantity is small and repeatable. Higher part volumes may require a new mold and tooling.
Injection-molded parts’ cost depends on the material used and the price of procuring the material. The type of material also influences how long the part will last. Plastics that contain high percentages of glass fibers are abrasive and can damage an injection mold. Therefore, they are more expensive but may not be necessary for certain applications. Additionally, the material’s thermal properties may also affect the cycle time.
Mold size is another factor that impacts the cost. Larger molds require more CNC machinery and building space than smaller molds. Additionally, the complexity of the part will also impact the cost. Injection molds with sharp corners and complex ribs will cost more than small injection molds without intricate designs.
Injection molding is a complex process that requires a variety of moving parts. During the process, a critical piece of equipment is the injection die. This machine is a large part of the process, and comes in different sizes and shapes. Its purpose is to accept the hot plastic and machine it to extremely precise tolerances.
If your project requires a complex product with a high degree of complexity, injection molding is an excellent choice. It is ideal for initial product development, crowdfunding campaigns, and on-demand production. Mold modifications can also lower the cost of injection molding.

editor by CX 2023-04-26
China high quality China Factory High Quality Custom Injection Molded PC CZPT with Hot selling
Product Description
Product Description
| Professional High Precision Plastic Injection Mould Factory | |
| Mould material | P20, 718, NAK80, S316H |
| Hardness of steel | Vacuum quenching, nitride, hrc41-47, hrc46-50, hrc60 |
| Mould base | LKM, HASCO |
| Mould cavity | Single / Multi |
| Runner system | Hot / Cold |
| MoInjection machies equipments | According to product precision to choice the different model 100T,128T,150T,200T,250T,368T,450T injection machine. |
| Inspection | 100% inspection by QC, QA before shipping. |
| Fast mould design | Can be within 1-3 working days after getting customer’s drawings |
| Lead time | Plastic moulds : 3- 6 weeks after getting the mould design confirmation |
| Mould testing | All of the moulds can be well tested before the shipments. Videos for moulds trial running are available. |
| Minimum order | Small orders for injection moulding can be accepted |
| Production capacity | 50 sets/month |
| CAD for quote | Step.& dwg. |
| Mould life | 100-500K shots |
| After sales service | Available by our staff with more than 10 years of working experience in this field |
Product Show
| CNC Plastic Precision Mechanical Dummy Prototype | 1. CNC ABS part |
| 2. CNC PC clear part | |
| 3. CNC PMMA transparent | |
| 4. CNC plastic part | |
| 5. CNC machining prototype | |
| 6. Vacuum casting molding | |
| 7. Vacuum casting TPU part | |
| 8. Silicon rubber molding partpart | |
| 9. Small production by SLA/vacuum casting | |
| Plastic material | ABS, PP, PC, POM, PMMA, NYLON, TPE, TPU etc |
| Color | RAL/PANTONE color |
| Prototype surface finish | Polishing finish,Texture Finish,Glossy Finish,Painting,Slik print,Rubber Painting etc |
Manufacturing Ability
Our Service
| ScHangZhou & 3D drawing | can make a 3D drawing through scHangZhou machine with sample | |
| CNC Machining prototype | ABS, PC, Nylon, good strength, same material features as injection parts | |
| SLA & 3D print prototype | cost effective for part show or design test | |
| Vacuun casting mold/Silicon mold | for TPU or rubber material, color part available | |
| Plastic injection mould | soft tooling or production mould, can do switch runner at single tool to save tooling investment | |
| Injection moulding parts | ABS, PC, POM, TPU, overmolding parts, can provide painting or logo print service | |
| Advantages | Confidentiality | Signed NDA documents to ensure all your information discussed be confidential. We will also train the staff with detailed regulations and not showing the staff full data if not necessary. |
| Initiative communication |
Through many years cooperation with our partners, we are confident to provide you satisfied quality with a reasonable price. Not only providing satisfied quality and on-time delivery, but we also have a dedicated and initiative staff for every issue happened in the process. | |
| Efficient service | For some urgent issues, we provide 7*24 hours for timely feedback.We will reply your mail within 12 hours or earlier since our team members are energetic and all using smartphone devices.Please add our or for better communication | |
| Advantage in price | We are also happy to follow up your other projects which need outsourcing service, what we think is to save your plant visit cost and transportation cost etc. Our team’s goal is to work hard to find out the best price with good quality products for our customers and achieve more trust and confidence on both sides |
|
Packaging & Shipping
| Delivery Method: | Payment Terms: | Warranty Period: |
| Sample by Express Courier, such as DHL, Fedex,UPS, TNT, EMS etc.; Bulk Order by Air, by Load or by Sea; | We accept TT, western union, paypal, moneygram, Escrow , (if you prefer other ways ,pls let us know) | We cherish every cooperation chance, and treat customer as friend. Production quality will always be same with sample test. For defected goods, we will re-produce and ship out for replacement |
Company Profile
Why Choose Us
FAQ
Q1:What is your business scope?
A1: Our factory provides CNC plastic prototype, Plastic injection mould, moulding production, logo print and color painting.
Q2:Can you help to share an idea for a new product?
A2: Yes. We are always happy to cooperate with potential customers to evaluate the technical feasibility. Like, choose the right material, optimized the design, DFM report, and building cost etc.
Q3:Can you make double color injection mold or over-molding mould?
A3: Yes, we can. Have made lots of double color molds for brand earphones.
Q4:Which country do you frequently work with?
A4: Our customer groups mainly from USA, Canada, Mexico, Australia, Japan, Singapore, India, Israel etc.
Q5:How to have my components quoted?
A5: Please share us your drawings with 3D format (.STEP or .IGES files) and detailed BOM sheet. We are pleased to CZPT the NDA with your company.
Q6:Can I have precision prototypes for testing before tooling design?
A6: Sure, our factory can prepare the prototype with surface finish and color painting, either CNC machining or SLA 3D printing is available.
Q7:What is the lead time for CNC prototypes?
A7: It is about 4 to 7 days for qty less than 5sets, and 7 to 12 days for qty above 10sets. Before painting process, we will polish and test part assembly, and then share video for confirmation.
Q8:We’ve decided to go ahead for the project. How long will it take to get T1 parts?
A8: It takes 3 to 4 weeks to have the mould/tooling manufactured well before first tooling trial. Once the part quality approved with good quality by your side, you can expect parts delivery within 2 weeks.
| Shaping Mode: | Injection Mould |
|---|---|
| Surface Finish Process: | Polishing |
| Mould Cavity: | Multi Cavity |
| Plastic Material: | PC |
| Process Combination Type: | Single-Process Mode |
| Application: | Household Appliances, Electronic, Home Use |
| Samples: |
US$ 30/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

Factors to Consider When Converting a Design to Injection Molding
When considering injection molding for your design, there are several things you should consider. These factors include design, material selection, process, and reliability. In addition, you should consider the price of each part. The average cost per injection molded part is between $1 and $5. If you want to reduce your costs and improve your production cycle, look into converting your design to injection molding.
Design considerations for injection molded parts
Injection molded parts must meet certain design considerations to ensure quality and precision. Design considerations include proper material choice, process control, and tool design. In addition, designers must consider the tolerance ranges for the parts to be produced. These tolerances will differ from molder to molder, and designers should discuss their specific needs with their molders before they begin production. Designers must also consider possible revisions to the mold, such as making the part more or less tighter.
When designing injection molded parts, the designer should consider the thickness of each wall. This will minimize stresses that may arise due to uneven wall thickness. Parts with uneven wall thickness can develop sink marks, voids, and molded-in stresses. This can result in longer production time and increased cost. Moreover, irregular wall thickness can restrict material flow. To minimize these problems, designers should make the transitions between the different thicknesses smooth.
Another important design consideration is the use of bosses in injection molded parts. Bosses are typically used as points of assembly and attachment in injection molded parts. Bosses are cylindrical projections with holes for threaded inserts and other fastening hardware. Injection molded parts with bosses are generally able to accommodate multiple threaded inserts without stripping. These inserts are also durable and enable several cycles of assembly.
The thickness of the walls is another important consideration when designing injection molded parts. The thickness of walls will determine many key characteristics of the part. Careful consideration of this feature will prevent expensive mold modifications and delays. The nominal wall thickness should be determined based on the functional requirements of the part. Likewise, the minimum wall thickness should be set based on acceptable stress. If the walls are too thin, air will collect between them and compromise the functional performance of the part.
Material selection
Selecting the right material for your injection molded parts is an important part of the process. While there are many options, there are also many factors to consider. For instance, what kind of end product are you producing? Whether it’s a consumer part for your home or a complex part for the aerospace industry, you’ll need the right material for the job.
There are literally hundreds or thousands of types of plastic materials available for injection molding. One of the most common types is ABS, a polymer that has a high degree of structural strength and low cost. Another popular choice is polycarbonate, which offers excellent heat resistance and transparency. Alternatively, you can opt for Ultem, a high performance plastic that’s commonly used in medical and aerospace applications.
The process of designing plastic products involves a combination of art and science. The goal of this process is to create a high-quality product that meets the expectations of consumers. By doing this, you’ll reduce production costs and increase profits. It’s not an easy process, but it’s well worth the effort.
Injection molding is an efficient and versatile method of manufacturing medical devices. It can be done in high volumes and with high flexibility. In addition to this, it also offers a broad range of materials. This is important when your parts need to be made of different materials with unique physical properties. For example, if you’re producing toys, you’ll want to use Acrylonitrile Butadiene Styrene (ABS). ABS is also a great option for medical applications because it can withstand the high temperatures and pressures of medical environments.
When choosing plastic injection molding materials, keep in mind the weight and stiffness of the material. Some applications require hard plastics, while others require softer materials. In addition, the material’s flexibility will determine how much you can bend it.
Process
Injection molding is a process in which plastic parts are formed by pressing melt into a mold. The process takes place in two stages. During the first step, the material is injected and heated, while the second stage is when the mold is opened and the part ejected. The part is then finished and ready for use.
The material used in injection molding is made from a variety of polymers. Common polymers include nylon, elastomers, and thermoplastics. Since 1995, the number of materials used in injection molding has increased by 750 percent. Some materials are newly developed while others are alloys of previously-developed materials. The selection of material primarily depends on the strength and function required by the final part. Also, the cost of the material is a critical factor.
The design of custom components for the molding process should be carried out by a skilled industrial designer. There are a number of design guidelines for plastic parts, which should be followed carefully to achieve high quality and dimensional accuracy. Failure to follow these guidelines can lead to undesirable results. Therefore, it is crucial to specify specific requirements for the parts before the process begins.
The process is reliable and highly repeatable, making it ideal for large-scale production. Injection molding also allows for the creation of multi-cavity injection mold parts, which can create several parts in one cycle. Other advantages of the injection molding process include low labor costs, minimal scrap losses, and low post-mold finishing costs.
Before beginning the full production run, technicians perform a trial run. In this test, they insert a small shot weight in the mould. Then, they apply a small holding pressure and increase the holding time until the gate freezes. Then, they weigh the part to check if it is right.
Reliability
Injection-molded parts are subject to a variety of defects. One of the most common is unwanted deformation. This may happen when the temperature of the mold is too high or there is not enough plastic injected into the mold. Another problem is millidiopter range distortion. This distortion is invisible to the naked eye, and cannot be detected by manual inspection. Regardless of the cause, preventing unwanted deformations is critical for the long-term performance of the part.
The process of creating a custom mould for a plastic component requires great skill. Creating a mould that is perfectly suited to the product is important, because a good mould is crucial in avoiding potential defects. Traditionally, this process relied on the skill of a toolmaker and trial-and-error methods. This slows down the process and increases the cost of production.
Another factor contributing to injection molded parts’ reliability is the high level of repeatability. Injection molding is ideal for high volume production, because parts are easily re-molded. However, the process can be prone to failure if there is no quality control. While most injection-molded parts will last for a long time, parts that are prone to wear will eventually fail.
Besides high level of consistency and reliability, injection-molded parts are also eco-friendly. Unlike other manufacturing methods, the injection molding process produces little to no waste. Much of the plastic left behind in the process can be recycled, making it a green alternative. Another benefit of this manufacturing method is automation, which helps reduce production costs. Overall, injection molding is a highly reliable and consistent product.
Injection molding requires precise measurements and a 3-D model. It is also important to check for wall uniformity and draft angles. Properly-designed parts can avoid deformations. If the wall thickness is too low, support ribs can be used. Proper draft angles are important to ensure that the part can be removed easily from the mold.
Cost
The cost of injection molded parts depends on many factors, including the complexity of the part and the mold design. Simpler designs, fewer CAD steps and simpler processes can help companies minimize costs. Another factor that affects the cost of injection molded parts is the geometry of the part. In general, complex geometries require more design work and tooling time. Additionally, thicker walls require more material than thin ones, which raises the cost of the part.
The amount of plastic used in the mold is also a key factor. Injection molding requires large quantities of material, so parts that are larger will require a larger mold. Larger parts are also more complex, so these require more detailed molds. A mold maker will be able to advise you on how to design your part to cut down on costs.
The next major factor affecting the cost of injection molded parts is the material of the mold. Most injection molds are made of steel, but the type and grade of steel used is important. Additionally, tight tolerances require molds with virtually wear-free interior cavities. Hence, higher-grade steel is required.
Another factor affecting the cost of injection molded parts is the price of mold tools. Depending on the size and complexity of the part, the cost of molding tools can vary from $10,000 to several hundred thousand dollars. Injection molding tooling is an integral part of the entire process and can add up to a significant portion of the overall cost of the part.
Draft angles are another factor that affects the cost of injection molded parts. A draft is an important design element as it allows for easy part separation and removal from the mold. Without a draft, it would be very difficult to remove a part after injection.

editor by CX 2023-04-25
China wholesaler Plastic Coil Bobbin Custom Plastic Injection Molded Parts injection molding part detection
Product Description
Introduction
As a leading plastic injection molding company, Moldor Plastic has achieved rich experiences of design, engineering, and manufacturing value-added plastic mold and supplying molded products to customers all over the world. Equipped with state of the art machines and skilled workers, we provide you the high-quality products at very competitive price.
Our CZPT are widely used in Auto Accessories, Electronics, Household appliances, Medical Devices, Game Players, Mechanical devices and other fields.
QUALITY FIRST & SERVICE FIRST & CUSTMER FIRST is our aim,MAKE EVERY PROJECT A SUCCESS is our mission.We sincerely hope to be your trustworthy partner for long-termcooperation.
Product Details
| Mold Shaping | Customized Plastic Injection Molding |
| Plastic Material | PP, PC, PS, POM, PE, ABS, etc. as per customers’ requierment |
| Surface Finish | Mirror Polish, Texture, Sandblast, Mate, Spray Paint, Silk screen and etc. |
| Plastic Material | PP, PC, PS, POM, PE, ABS, etc. as per customers’ requierment |
| Delivery Time | 5-8 days after samples confirmed |
| Color | Provide Pantone Color Code or sample |
| Packaging | Standard Export Carton |
Custom Your Own CZPT in CZPT !
According to your drawings or samples, we can provide one-stop solutions service from designing, prototyping, molds
making, processing, spraying, assembling, inspecting, packaging to delivering, everything will be managed to the
smallest detail.
If you have products or ideas that require injection mold & molding, CZPT would like to serve you. Our knowledgeable engineers and designers will offer suggestions on how to manufacture your product to allow for a professional
look as well as for ease of manufacturing.
Please kindly email us your inquiry, and our professional team is committed to providing personal service at the
lowest possible prices to you.Your any inquiry is welcomed and will be replied soon.
Related Products
MOLDOR PLASTIC Advantage:
In-house mold design and building capabilities to improve work efficiency.
NDA agreement can be signed to protect customers’ idea
and design.
Professional sales team. Good communication skills and
after service.
Professional design team, mold maker engineer. OEM/
ODM service.
Professional QC and R&D teams to assure high quality.
Delivery on time.
We can do more than you expected…
1. Manufacturing experience for over 15 years.
2. Customized designs and services are accepted.
Professional design team and engineering team offer
technical support.
3. Manufacturing process control.
4. Small volume production or mass production is available.
5. Trained workers and professional QC team to assure the
product quality.
6. Inspection report and material test certificates are
available CZPT requests.
7. Standard: HASCO or as customer’s requirement.
……
Factory Capability
Our Service
Step 1: Product Design: We provide product design service as customers’ request.
Step 2: Mold Design: We communicate & exchange the detail information with our customers to make a good mold design.
Step 3: Mold Making: Manufacturing in-house, we send the mold processing photos and videos to customers.
Step 4: Mass Production: We start plastic injection parts production after customers confirm samples.
Step 5: Assembly: We can supply assembly service as customers’ requests.
Step 6: Value added Service: Available, such as screen printing, plating, custom packaging and etc.
Packaging & Shipping
FAQ
Q1:Are you a trading company or factory?
A1:We are factory.
Q2:What type of information is required for quoting a molding project?
A2:Please send your drawings or sample to us.
Q3:How long do you take to build a mold?
A3:The production timeline depends on your specific needs, normally the lead time is 25-45days.
Q4:How small or large of a plastic part will you produce?
A4:Our machine capabilities cover a range from 60-ton to 500-ton clamping forces.
Q5:What kind of steel do you use for plastic moldings?
A5:We can use any type of steel appointed by customer or popular in the market.Such as P20,718,8407,NAK80,H13,S136,
DIN 1.2738,DIN 1.2344,etc.
Q6:What types of materials can be molded by your injection products?
A6:Polystyrene,ABS,PET,TPR,TPU,PVC,Nylon,Acetal,Polypropylene,Polyethylene, Polycarbonates and etc.
Q7:Do you offer secondary service such as assembly, packaging or painting?
A7:Yes,such as assembly, painting, tapping, ultrasonic welding, trimming, sorting, customized packaging and etc.
Q8:If I have an existing tooling, could you use it to mold my project?
A8:Most certainly, if existing tooling is available, we can use them.
Q9:Can you mold around inserts or metal components?
A9:We can do insert molding with just about any metal and non-metal components.
| Plastic Type: | Thermoplast |
|---|---|
| Plastic Form: | Granule |
| Molding Method: | Injection Molding |
| Plastic Color: | Black, Red, Yellow, White, or Others |
| Mold Runner: | Cold or Hot Runner |
| Surface Finish: | Polish, Texture, Matt, Smooth, Can Be Customized |
| Customization: |
Available
| Customized Request |
|---|

Advantages of Injection Moulding
Whether you’re considering an injection molded part for your next project or need to replace an existing one, there are a few factors you should consider. These include design, surface finishes, tooling costs, and material compatibility. Understanding these factors can help you make the right decision. Read on to learn more about the advantages of injection molding and how to get started.
Design factors
One of the most critical design factors for injection molded parts is the wall thickness. The wall thickness affects many key characteristics of the part, from its surface finish to its structural integrity. Proper consideration of this factor can prevent costly delays due to mold issues or mold modifications. To avoid this problem, product designers must carefully consider the functional requirements of the part to determine the minimum and nominal wall thickness. In addition, they must also consider acceptable stress levels, since parts with excessively thin walls may require excessive plastic pressure and may create air traps.
Another factor to consider when designing a part is its ejection and release capabilities. If the part is released from the mold, the tools should be able to slide the plastic out. Injection molds usually have two sides, one of which is ejectable, and another that remains in the mold. In some cases, special features are required to prevent part release, such as a ramp or a gusset. These design features can increase the design flexibility, but they can also increase the cost of the mold.
When designing injection molded parts, the engineering team first determines the key design elements. These elements will make sure the injection process goes as smoothly as possible. This includes factors like wall thickness, rib design, boss design, corner transition, and weld line, among others. The engineering team will then perform a design for manufacturability analysis and, if all is well, can start building and testing the mold.
Material compatibility
Several factors can affect material compatibility of injection molded parts. When molding plastic parts, it is important to choose a material that is compatible with the part’s intended purpose. Many injection molding processes require that the two main plastic materials used are compatible with each other. This is the case in overmolding and two-shot injection molding.
The material you use to make an injection molded part will significantly impact the tolerance of the finished product. This is why material selection is as important as the design of the part. Many types of plastic resins can be used for injection molding. In addition, many of these resins can be modified or strengthened by adding additives, fillers, and stabilizers. This flexibility allows product teams to tailor the material to achieve desired performance characteristics.
One of the most common thermoplastics is polypropylene. It is extremely durable and has good impact strength and moisture resistance. This material is also recyclable and does not react with food.
Tooling costs
One of the largest costs for manufacturing injection molded parts is tooling. For an OEM, tooling costs can range from $15K per part for a simple part to $500K for a mold with complex geometry. Tooling costs vary based on the type of steel used and the production volume of the part.
To get a reasonable estimate, companies should have a final design, preliminary design, and sample part to hand when requesting quotes. The dimensions and complexity of the cavity in a mold are crucial in determining the tooling cost, as are the part tolerances. Part tolerances are based on the area covered by the part and its functions within the mold.
The type of mold you need can also impact your tooling costs. Injection molding machines can accommodate many different kinds of molds. Some molds are made from a single mold, while others require multiple molds. Some molds can be complicated, making them unmanufacturable, which in turn drives up the cost of tooling.
The costs for tooling for injection molding are not well known, but they do add up quickly. Many product development teams tend to consider the cost of the injection molding process in terms of direct materials, machine time, and labor, but that cost model often fails to take into account additional components.
Surface finishes
Surface finishes on injection molded parts are often used to mask defects, hide wear and tear, or enhance a product’s appearance. These finishes can also be useful when the product will come in contact with people’s hands. The surface texture you choose will depend on your desired functionality as well as the way you want to use the product. Generally, rougher textures provide better grip while masking minor molding imperfections. However, they can also make a product more difficult to release from the mold. This means that you may have to increase the draft angle of the mold. In order to get the best surface finish, the toolmaker and product designer must collaborate closely early in the design process.
There are several different surface finishes that can be used for injection molded parts. One type is known as the B-grade finish, and is compatible with a wide variety of injection molding plastics. Another type of finish is called a stone polishing process, and is ideal for parts that have no aesthetic value.
Overhangs
The injection moulding industry refers to overhangs on injection molded parts as “undercuts,” and these can lead to design instability. To minimize undercuts, the design must be parallel to the part’s surface. If an undercut is present, a zigzag parting line can be used.
The overhang is typically a few millimeters shorter than the surface of the mold. It is generally made from a lower-cost plastic material than the part’s surface area. The material used for the overhang should have sufficient strength to fulfill its function. An overhang will also help to prevent the piece from deforming or cracking.
Injection molding can create overhangs around the perimeter of a part. Overhangs are not always necessary; they can be added to parts as desired. Adding an overhang, however, will add substantial tooling costs. As a result, it is better to minimize the overall thickness of a design. However, in some cases an overhang can be useful to make the part look more attractive.
For parts with complex geometries, there are a few options for overhangs. Some manufacturers use side-action molds to form more complex shapes.
CNC machining
CNC machining of injection molded parts is a process that helps manufacturers achieve precise surfaces and shapes for their products. This process typically begins with the milling of the tooling, which is typically made of aluminum or steel. This tooling is then placed in a CNC mill. This machine carves the negative of the final plastic part, making it possible to achieve specific surface finishes. The process can be adapted to create a part with a complex structure or special features.
CNC machining allows the manufacturer to produce high-performance parts. This is possible because MIM parts do not experience induced stresses or internal pressure during the manufacturing process. Furthermore, the parts produced by MIM are more durable than CNC parts. Despite their advantages, CNC machining has its limitations, especially when it comes to design freedom and intricacy. This factor is largely dependent on the software used by the manufacturer or designer.
One drawback of CNC machining is its higher cost. Compared to injection molding, CNC machining is more expensive per part. The reason is that the initial mold cost is relatively high and is spread over a large number of parts. Once the injection molding process has been completed, the cost of the parts produced by this process becomes more competitive with those produced by machined parts. However, the cost gap increases with the volume of parts produced. This cost crossover generally occurs in quantities of at least 100 parts and can reach a maximum of 5000 parts.
Production volume
The production volume of injection molded parts varies depending on the material being used. Large volumes of parts are expensive to produce, while small quantities can be produced for low cost. Injection molding requires a precise mold, which is CNC-machined from tool steel or aluminum. The mold has a negative of the part that is injected, a runner system, and internal water cooling channels to aid in cooling the part. Recent advances in 3D printing materials have made it possible to produce molds for low-volume injection molding. Previously, this was not financially viable due to the high cost of traditional mold making.
A mold is used to produce plastic parts. The molding process is very fast, with each cycle taking anywhere from 30 seconds to 90 seconds. After a part is molded, it is removed from the mold and placed on a holding container or conveyor belt. Injection molded parts are generally ready for use right away and require minimal post-processing. Injection molded parts have a similar design to a photograph, since the geometry is directly transferred to the part’s surface texture.
When selecting a plastic mold, it is important to determine the volume that the part will be produced at. If the volume is low, softer plastics may be used. However, as the part is molded over, its performance characteristics may degrade. In low-volume production, it is important to consider the overall complexity of the part. This includes the part’s draft, wall thickness, and surface finish.

editor by CX 2023-04-24
China OEM OEM ODM Manufacturer ABS Injection Mold Molding Part Plastic for Small Molded Parts standard tolerances for injection molded parts
Product Description
Product Description
| Professional High Precision Plastic Injection Mould Factory | |
| Mould material | P20, 718, NAK80, S316H |
| Hardness of steel | Vacuum quenching, nitride, hrc41-47, hrc46-50, hrc60 |
| Mould base | LKM, HASCO |
| Mould cavity | Single / Multi |
| Runner system | Hot / Cold |
| MoInjection machies equipments | According to product precision to choice the different model 100T,128T,150T,200T,250T,368T,450T injection machine. |
| Inspection | 100% inspection by QC, QA before shipping. |
| Fast mould design | Can be within 1-3 working days after getting customer’s drawings |
| Lead time | Plastic moulds : 3- 6 weeks after getting the mould design confirmation |
| Mould testing | All of the moulds can be well tested before the shipments. Videos for moulds trial running are available. |
| Minimum order | Small orders for injection moulding can be accepted |
| Production capacity | 50 sets/month |
| CAD for quote | Step.& dwg. |
| Mould life | 100-500K shots |
| After sales service | Available by our staff with more than 10 years of working experience in this field |
Product Show
| CNC Plastic Precision Mechanical Dummy Prototype | 1. CNC ABS part |
| 2. CNC PC clear part | |
| 3. CNC plastic part | |
| 4. CNC machining prototype | |
| 5. Vacuum casting molding | |
| 6. Vacuum casting TPU part | |
| 7. Silicon rubber molding partpart | |
| 8. Small production by SLA/vacuum casting | |
| Plastic material | ABS, PP, PC, POM, NYLON, TPE, TPU etc |
| Color | RAL/PANTONE color |
| Prototype surface finish | Polishing finish,Texture Finish,Glossy Finish,Painting,Slik print,Rubber Painting etc |
Manufacturing Ability
Our Service
| ScHangZhou & 3D drawing | can make a 3D drawing through scHangZhou machine with sample | |
| CNC Machining prototype | ABS, PC, Nylon, good strength, same material features as injection parts | |
| SLA & 3D print prototype | cost effective for part show or design test | |
| Vacuun casting mold/Silicon mold | for TPU or rubber material, color part available | |
| Plastic injection mould | soft tooling or production mould, can do switch runner at single tool to save tooling investment | |
| Injection moulding parts | ABS, PC, POM, TPU, overmolding parts, can provide painting or logo print service | |
| Advantages | Confidentiality | Signed NDA documents to ensure all your information discussed be confidential. We will also train the staff with detailed regulations and not showing the staff full data if not necessary. |
| Initiative communication |
Through many years cooperation with our partners, we are confident to provide you satisfied quality with a reasonable price. Not only providing satisfied quality and on-time delivery, but we also have a dedicated and initiative staff for every issue happened in the process. | |
| Efficient service | For some urgent issues, we provide 7*24 hours for timely feedback.We will reply your mail within 12 hours or earlier since our team members are energetic and all using smartphone devices.Please add our or for better communication | |
| Advantage in price | We are also happy to follow up your other projects which need outsourcing service, what we think is to save your plant visit cost and transportation cost etc. Our team’s goal is to work hard to find out the best price with good quality products for our customers and achieve more trust and confidence on both sides |
|
Packaging & Shipping
| Delivery Method: | Payment Terms: | Warranty Period: |
| Sample by Express Courier, such as DHL, Fedex,UPS, TNT, EMS etc.; Bulk Order by Air, by Load or by Sea; | We accept TT, western union, paypal, moneygram, Escrow , (if you prefer other ways ,pls let us know) | We cherish every cooperation chance, and treat customer as friend. Production quality will always be same with sample test. For defected goods, we will re-produce and ship out for replacement |
Company Profile
Why Choose Us
FAQ
Q1:What is your business scope?
A1: Our factory provides CNC plastic prototype, Plastic injection mould, moulding production, logo print and color painting.
Q2:Can you help to share an idea for a new product?
A2: Yes. We are always happy to cooperate with potential customers to evaluate the technical feasibility. Like, choose the right material, optimized the design, DFM report, and building cost etc.
Q3:Can you make double color injection mold or over-molding mould?
A3: Yes, we can. Have made lots of double color molds for brand earphones.
Q4:Which country do you frequently work with?
A4: Our customer groups mainly from USA, Canada, Mexico, Australia, Japan, Singapore, India, Israel etc.
Q5:How to have my components quoted?
A5: Please share us your drawings with 3D format (.STEP or .IGES files) and detailed BOM sheet. We are pleased to CZPT the NDA with your company.
Q6:Can I have precision prototypes for testing before tooling design?
A6: Sure, our factory can prepare the prototype with surface finish and color painting, either CNC machining or SLA 3D printing is available.
Q7:What is the lead time for CNC prototypes?
A7: It is about 4 to 7 days for qty less than 5sets, and 7 to 12 days for qty above 10sets. Before painting process, we will polish and test part assembly, and then share video for confirmation.
Q8:We’ve decided to go ahead for the project. How long will it take to get T1 parts?
A8: It takes 3 to 4 weeks to have the mould/tooling manufactured well before first tooling trial. Once the part quality approved with good quality by your side, you can expect parts delivery within 2 weeks.
| Material: | ABS, PP, PC, POM, Nylon, TPE, TPU etc |
|---|---|
| Application: | Medical, Household, Electronics, Automotive, Agricultural |
| Certification: | ISO |
| Mold Standard: | Lkm, Hasco, Dme or Upon Customer′s Requirement |
| Mold Material: | P20, 718, Nak80, S316h |
| Production Material: | ABS, PP, PC, POM, Nylon, TPE, TPU etc |
| Customization: |
Available
| Customized Request |
|---|

Factors to Consider When Converting a Design to Injection Molding
When considering injection molding for your design, there are several things you should consider. These factors include design, material selection, process, and reliability. In addition, you should consider the price of each part. The average cost per injection molded part is between $1 and $5. If you want to reduce your costs and improve your production cycle, look into converting your design to injection molding.
Design considerations for injection molded parts
Injection molded parts must meet certain design considerations to ensure quality and precision. Design considerations include proper material choice, process control, and tool design. In addition, designers must consider the tolerance ranges for the parts to be produced. These tolerances will differ from molder to molder, and designers should discuss their specific needs with their molders before they begin production. Designers must also consider possible revisions to the mold, such as making the part more or less tighter.
When designing injection molded parts, the designer should consider the thickness of each wall. This will minimize stresses that may arise due to uneven wall thickness. Parts with uneven wall thickness can develop sink marks, voids, and molded-in stresses. This can result in longer production time and increased cost. Moreover, irregular wall thickness can restrict material flow. To minimize these problems, designers should make the transitions between the different thicknesses smooth.
Another important design consideration is the use of bosses in injection molded parts. Bosses are typically used as points of assembly and attachment in injection molded parts. Bosses are cylindrical projections with holes for threaded inserts and other fastening hardware. Injection molded parts with bosses are generally able to accommodate multiple threaded inserts without stripping. These inserts are also durable and enable several cycles of assembly.
The thickness of the walls is another important consideration when designing injection molded parts. The thickness of walls will determine many key characteristics of the part. Careful consideration of this feature will prevent expensive mold modifications and delays. The nominal wall thickness should be determined based on the functional requirements of the part. Likewise, the minimum wall thickness should be set based on acceptable stress. If the walls are too thin, air will collect between them and compromise the functional performance of the part.
Material selection
Selecting the right material for your injection molded parts is an important part of the process. While there are many options, there are also many factors to consider. For instance, what kind of end product are you producing? Whether it’s a consumer part for your home or a complex part for the aerospace industry, you’ll need the right material for the job.
There are literally hundreds or thousands of types of plastic materials available for injection molding. One of the most common types is ABS, a polymer that has a high degree of structural strength and low cost. Another popular choice is polycarbonate, which offers excellent heat resistance and transparency. Alternatively, you can opt for Ultem, a high performance plastic that’s commonly used in medical and aerospace applications.
The process of designing plastic products involves a combination of art and science. The goal of this process is to create a high-quality product that meets the expectations of consumers. By doing this, you’ll reduce production costs and increase profits. It’s not an easy process, but it’s well worth the effort.
Injection molding is an efficient and versatile method of manufacturing medical devices. It can be done in high volumes and with high flexibility. In addition to this, it also offers a broad range of materials. This is important when your parts need to be made of different materials with unique physical properties. For example, if you’re producing toys, you’ll want to use Acrylonitrile Butadiene Styrene (ABS). ABS is also a great option for medical applications because it can withstand the high temperatures and pressures of medical environments.
When choosing plastic injection molding materials, keep in mind the weight and stiffness of the material. Some applications require hard plastics, while others require softer materials. In addition, the material’s flexibility will determine how much you can bend it.
Process
Injection molding is a process in which plastic parts are formed by pressing melt into a mold. The process takes place in two stages. During the first step, the material is injected and heated, while the second stage is when the mold is opened and the part ejected. The part is then finished and ready for use.
The material used in injection molding is made from a variety of polymers. Common polymers include nylon, elastomers, and thermoplastics. Since 1995, the number of materials used in injection molding has increased by 750 percent. Some materials are newly developed while others are alloys of previously-developed materials. The selection of material primarily depends on the strength and function required by the final part. Also, the cost of the material is a critical factor.
The design of custom components for the molding process should be carried out by a skilled industrial designer. There are a number of design guidelines for plastic parts, which should be followed carefully to achieve high quality and dimensional accuracy. Failure to follow these guidelines can lead to undesirable results. Therefore, it is crucial to specify specific requirements for the parts before the process begins.
The process is reliable and highly repeatable, making it ideal for large-scale production. Injection molding also allows for the creation of multi-cavity injection mold parts, which can create several parts in one cycle. Other advantages of the injection molding process include low labor costs, minimal scrap losses, and low post-mold finishing costs.
Before beginning the full production run, technicians perform a trial run. In this test, they insert a small shot weight in the mould. Then, they apply a small holding pressure and increase the holding time until the gate freezes. Then, they weigh the part to check if it is right.
Reliability
Injection-molded parts are subject to a variety of defects. One of the most common is unwanted deformation. This may happen when the temperature of the mold is too high or there is not enough plastic injected into the mold. Another problem is millidiopter range distortion. This distortion is invisible to the naked eye, and cannot be detected by manual inspection. Regardless of the cause, preventing unwanted deformations is critical for the long-term performance of the part.
The process of creating a custom mould for a plastic component requires great skill. Creating a mould that is perfectly suited to the product is important, because a good mould is crucial in avoiding potential defects. Traditionally, this process relied on the skill of a toolmaker and trial-and-error methods. This slows down the process and increases the cost of production.
Another factor contributing to injection molded parts’ reliability is the high level of repeatability. Injection molding is ideal for high volume production, because parts are easily re-molded. However, the process can be prone to failure if there is no quality control. While most injection-molded parts will last for a long time, parts that are prone to wear will eventually fail.
Besides high level of consistency and reliability, injection-molded parts are also eco-friendly. Unlike other manufacturing methods, the injection molding process produces little to no waste. Much of the plastic left behind in the process can be recycled, making it a green alternative. Another benefit of this manufacturing method is automation, which helps reduce production costs. Overall, injection molding is a highly reliable and consistent product.
Injection molding requires precise measurements and a 3-D model. It is also important to check for wall uniformity and draft angles. Properly-designed parts can avoid deformations. If the wall thickness is too low, support ribs can be used. Proper draft angles are important to ensure that the part can be removed easily from the mold.
Cost
The cost of injection molded parts depends on many factors, including the complexity of the part and the mold design. Simpler designs, fewer CAD steps and simpler processes can help companies minimize costs. Another factor that affects the cost of injection molded parts is the geometry of the part. In general, complex geometries require more design work and tooling time. Additionally, thicker walls require more material than thin ones, which raises the cost of the part.
The amount of plastic used in the mold is also a key factor. Injection molding requires large quantities of material, so parts that are larger will require a larger mold. Larger parts are also more complex, so these require more detailed molds. A mold maker will be able to advise you on how to design your part to cut down on costs.
The next major factor affecting the cost of injection molded parts is the material of the mold. Most injection molds are made of steel, but the type and grade of steel used is important. Additionally, tight tolerances require molds with virtually wear-free interior cavities. Hence, higher-grade steel is required.
Another factor affecting the cost of injection molded parts is the price of mold tools. Depending on the size and complexity of the part, the cost of molding tools can vary from $10,000 to several hundred thousand dollars. Injection molding tooling is an integral part of the entire process and can add up to a significant portion of the overall cost of the part.
Draft angles are another factor that affects the cost of injection molded parts. A draft is an important design element as it allows for easy part separation and removal from the mold. Without a draft, it would be very difficult to remove a part after injection.

editor by CX 2023-04-23
China manufacturer Custom-Made Plastic Injection Molding Service Molded CZPT injection molded parts drawing
Product Description
Our Service
We can offer the full range of service from product design,mold designing, making, plastic part molding to printing, assembly, package, and shipping arrangement.
*We have over 20 years production experience.
*Free Design Service:Sent us a physical sample our team provided free part design work.We also provided free mold design work after contract signed by both sides.
*Free Mold:Quantity reaches some amount, mold fee can be refund.
*Fast Mold:For simple and urgent mold,we can speed up to 15 days to finish mold and send out samples.
* In the service of plastic injection, Ideal plastic is more than just an injection molder.We provide solutions to manufacturing from start to finish.Our expertise enables us to provide clients with superior product by providing,highest quality in design, development, and solutions for precision injection molding and related manufacturing.
Custom Precision Plastic Injection Molding Services
We offers comprehensive custom plastic injection molding services to a wide range of industries. From low volume work to high volume production runs, we have the expertise and facilities to meet our customers’ contract manufacturing needs. We offer two shot, sandwich and insert injection molding as well as micro and gas assist molding. We have both 10K and 100K manufacturing facilities for those customers in the medical, pharmaceutical, food, beverage and electronics industries. Our comprehensive plastic injection molding abilities include machines with clamping forces from 18 to 3,000 tons, allowing us to produce nearly any plastic part including micro parts, thin-walled parts, and large components that require multiple shots.
We can source and mold any grade of material from typical commodity grade plastics, to engineering, functional, and structural grade materials in a variety of colors and formulations. In addition to injection molding, we offer many secondary services including sonic vibration, RF welding, hot stamping, etching, printing, plating, and packaging. Our manufacturing processes are highly automated, which allows us to run a precise and efficient production floor with minimal overhead costs. These capabilities allow us to provide fast and cost competitive manufacturing services to our customers without sacrificing precision and quality.
Products Case
Double-shot molding
Enclosure plastic injection molding Auto parts plastic injection molding Medical parts plastic injection molding
Our Advantages
1.Small details make big difference.All the parts from our company have no sharp edge. All dimensions are controlled
according to your drawings. Every product will be fully inspected and carefully packed to prevent the bump and rust in transit .
2. The craftsmanship of all parts we machined is controlled rigorously, Every product has its own process card and process chart.
3. Our quality inspection procedure is quite strict.it must self-inspected during production, we have flow inspectors and
professional inspectors.
4. Each size of product must be tested 1 by 1 after completing production.
If You Want To Create Something But No Ability To Design
You:I want to make a new product,but i only have hand made sketches,can anyone help me ?
Mogel:No worry at all.We have very
strong professional engineering and designing team,come to us,you will be in good hands.
I Have No Idea What Shoud I Do To Bring My Idea Into A Real Product
You:This is my first time to create a new product,i have no idea what should i do to make it happen.
Mogel:No worry at all.We will provide material suggestion and guide you through the design and cost evaluating stage,rest leave it
to us..
Company Profile
HangZhou Mogel Hardware & Plastic Co., Ltd. was founded initially as a Plastic injection molding and tooling fabrication plant from2006, afterwards growing quickly and set up Mogel Industry Limited in HK, we have several divisions,focusing on turnkey solutions inclusive of the CNC machining, Punching, Stamping and assembly .
In addition to being an OEM factory, we also have the capability of product research and development (R&D). We have industrial,mechanical and electronic design engineers We help our customers make their ideas become final products. Based on our extensive experience and deep understanding of mechanical and plastic components manufacturing,and now become a growing innovative mechanical , plastic components engineering design and manufacturing company.
Mogel group is proud to offer a comprehensive suite of compact and cost-effective products to our partners, monitoring and maintenance operations with the utmost in quality. Our factory are engaged in mechanical and plastic components manufacturing over 10 years with our goal to leverage on our synergetic capability to add value to our customer and grow the business together.
Strict inspection we do during operation
1. Experienced QC testers to check the products dimension, surface and performance according to drawings specification.
2. Experienced IQC to check the dimensions and surface of the incoming material.
3. Experienced PQC to inspect full-course during the processing.
4. Experienced FQC to inspect all the plating products from outsides and make the 100% inspection before the shipments.
Quality sample will be provided for your testing before production according to ISO 9001: 2008.
We are pleased to service you with excellent quality, reasonable cost and grow withyou together.
FAQ
Q1.How to have my components quoted ?
A1: Please contact us via TradeManager or Email and send us your drawings inclusive of 2D and 3D (.STEP or .IGE file) and detail requirements. We are pleased to CZPT NDA with you if you prefer. Then our engineering team will work on them and submit competitive quotation to you.
Q2.What is the lead time for tooling and samples fabrication?
A2: The exact lead time depends on your parts specification.
The normal lead time is 40*45 days for tooling fabrication and samples.
If the tooling is not required, the lead time for samples is 15 days normally.
Q3.Can I have prototypes for testing before tooling ?
A3: Yes, our factory have team to support prototypes with machining process to fabricate them for your testing.
Q4.How to ship the samples and production order ?
A4: We will normally ship samples via DHL, UPS or FedEX via our cooperated forwarder or freight collect. For the shipping of production order, it will be by sea or by air
Q5.How to ensure the quality of parts?
A5: Firstly, our team will inspect all incoming material. QC team will inspect parts while production and finished products, then submit Quality Inspection Report together with samples and production order.
| Plastic Type: | Thermosetting Plastic |
|---|---|
| Plastic Form: | Granule |
| Molding Method: | Injection Molding |
| Lead Time: | 25~35 Days |
| Surface: | Polishing or Custom |
| Material: | ABS, PC, PA66, Nylon etc. or Custom Material |
| Customization: |
Available
| Customized Request |
|---|

Designing Injection Molded Parts
Designing injection molded parts involves careful consideration of various parameters, including the wall thickness and draft angle. These factors are essential for a strong, durable part. Improper wall thickness can lead to sinking and warping defects. To avoid these issues, ensure that the walls of your injection-molded parts have a uniform thickness that does not vary too much from the rest of the part.
Designing out sharp corners in injection molded parts
When designing an injection molded part, it’s important to consider the corner radius. Sharp corners will create more stress, and this will lead to weak spots and cracks. Creating a radius around the corner helps distribute stress evenly and allows easier material flow and part ejection. Additionally, sharp corners in a mold can collect contaminants and create defects, including surface delamination.
Sharp corners in injection molded parts are a common source of stress and can cause the part to become damaged during the manufacturing process. In addition to trapping air, sharp corners may also lead to localized high temperatures that degrade the part. To reduce these risks, consider adding radii to all sharp corners.
Another important design factor to consider is wall thickness. Parts that have a smooth transition between sections should be designed with a minimum of five millimeters of wall thickness. Anything thicker will increase production cycle time and may also negatively impact mechanical properties. The use of fillets and chamfers can also help avoid these problems.
Designing out sharp corners in injection molded components can prevent costly problems from occurring during the manufacturing process. While the process is simple and straightforward, it needs to be done correctly to ensure quality. By following best practices, designers can ensure their parts won’t develop any problems or sink, warp, or voids. A poor design can also cause damage to the mold, which can cost thousands of dollars and hundreds of hours to redesign.
When designing injection molded parts, designers should consider the following guidelines. Incorporate internal and external radiuses. The internal radius (also called a fillet radius) is designed into the mold for improved quality and strength during the molding process. This radius is typically located on the inside corners or the bottom of a compartment. It can also be used for connecting walls and ribs. An external radius, on the other hand, is known as a round radius.
A right-angled part with sharp corners has a tendency to be loaded by pushing the vertical wall to the left. This creates a high-level of molded-in stress in the part. The resulting part may be weaker than expected because of the increased stress on the corner.
Importance of uniform wall thickness
Uniform wall thickness is a critical factor when designing injection-molded parts. This ensures that molten polymers can flow efficiently throughout the part. Additionally, it facilitates ideal processing. Varying wall thickness can cause problems during molding, such as air trapping, unbalanced filling, and weld lines. To ensure that your injection-molded parts are uniform, consult a plastic injection molding company that specializes in uniform wall thickness.
Injection-molded parts are more durable when the walls are uniform. A thin wall reduces the volume of material used in the part. However, thin walls can break during ejection. In addition, thin walls increase the possibility of voids. To prevent such problems, use larger machines that can produce parts with uniform wall thickness. This way, parts are easier to handle and ship.
Another important factor is the presence of gussets. These are support structures that stick out from a part’s surface. Gussets are useful for preventing warping, because they provide rigidity to thin unsupported sections. For this reason, gussets are essential when designing an injection-molded part.
Uniform wall thickness is especially critical in parts that have bends or rims. A uniform thickness helps maintain the mechanical strength and appearance of a part. However, this can be tricky as you may need to balance optical properties with mechanical ones. At Providence, we have the experience to help you navigate these challenges and produce quality parts.
Proper wall thickness is important for many reasons. It can affect both cost and production speed. The minimum wall thickness for injection molded parts depends on the part size, structural requirements, and flow behavior of the resin. Typically, injection molded parts have walls that are 2mm to 4mm thick. However, thin wall injection molding produces parts with walls as thin as 0.5mm. If you’re having trouble choosing the right wall thickness, consult an experienced injection molding company that can help you determine the appropriate wall thickness for your part.
Uneven wall thickness causes problems during injection molding. The uneven wall thickness may make the material flow through the part too quickly, or it may cause it to cool too slowly. This can lead to warping, twisting, or cracks. Even worse, uneven wall thickness can cause parts to become permanently damaged when they are ejected from the mold.
Importance of draft angle
Draft angles are an important part of design for injection molded parts. These angles are necessary because friction occurs on surfaces that come into contact with the mold during the molding process. A part with a simple geometry would only require a single degree of draft, but larger parts would need at least two degrees.
Almost all parts requiring injection molding will require some amount of draft. The better the draft, the less likely the parts will have a poor finish and may bend or break. Furthermore, parts with inadequate draft will take longer to cool, extending cycle times. Moreover, if the parts are too thick or have too little draft, they may become warped.
Having a draft angle in injection molding is very important, especially if the mold has sharp corners. Without it, parts will come out scratched and will shorten the life of the mold. In some cases, parts may even not be able to eject from the mold at all. To prevent this, air needs to be allowed to get between the plastic and metal. This allows air to escape and prevents warping during ejection.
The importance of draft angle is often overlooked in the design process. Adding this angle to the mold can help prevent problems with mold release and reduce production costs. A draft angle will also allow parts to release from the mold more easily and will lead to better cosmetic finishes and fewer rejected parts. Additionally, it will reduce the need for costly elaborate ejection setups.
Draft angle should be added to the design as early as possible. It’s crucial for the success of the injection molding process, so it is best to incorporate it early in the design process. Even 3D printed parts can benefit from this detail. The size of the draft angle is also important, especially for core surfaces.
A draft angle can be large or small. The larger the draft angle, the easier it is to release the mold after the mold is completed. However, if the draft angle is too small, it can lead to scrapes on the edges or large ejector pin marks. Draft angles that are too small can lead to cracks and increase mold expenses.
Cost
There are many factors that contribute to the cost of injection-molded parts, including the material used for the mold and the complexity of the design. For example, larger parts will require a larger injection mold, which will cost more to manufacture. Additionally, more complex parts may require a mold with special features. Mold makers can advise you on how to design your part in order to reduce the overall cost of an injection-molded part.
One of the biggest costs related to the production of injection molded parts is the cost of the tooling. Tooling costs can reach $1,000 or more, depending on the design, materials, and finishing options. Tooling costs are less if the part quantity is small and repeatable. Higher part volumes may require a new mold and tooling.
Injection-molded parts’ cost depends on the material used and the price of procuring the material. The type of material also influences how long the part will last. Plastics that contain high percentages of glass fibers are abrasive and can damage an injection mold. Therefore, they are more expensive but may not be necessary for certain applications. Additionally, the material’s thermal properties may also affect the cycle time.
Mold size is another factor that impacts the cost. Larger molds require more CNC machinery and building space than smaller molds. Additionally, the complexity of the part will also impact the cost. Injection molds with sharp corners and complex ribs will cost more than small injection molds without intricate designs.
Injection molding is a complex process that requires a variety of moving parts. During the process, a critical piece of equipment is the injection die. This machine is a large part of the process, and comes in different sizes and shapes. Its purpose is to accept the hot plastic and machine it to extremely precise tolerances.
If your project requires a complex product with a high degree of complexity, injection molding is an excellent choice. It is ideal for initial product development, crowdfunding campaigns, and on-demand production. Mold modifications can also lower the cost of injection molding.

editor by CX 2023-04-21
China best Professional Fashion Style China Precision Plastic Custom Injection Molded Parts Plastic CNC Mechanical Car Auto Part with Hot selling
Product Description
Professional Fashion Style China Precision Plastic Custom Injection Molded Parts Plastic CNC Mechanical Car Auto Part
| 1 | Business Type: | Custom CNC Milling Service (3-axis, 4-axis, 5-axis) Custom CNC Turning Services EDM Wire-EDM |
| 2 | Standard: | JIS, ANSI |
| 3 | Products Range: | Automobile parts,wind power generation equipment accessories,wind power generation equipment accessories, ER fluid, medical apparatus and instruments, standardization of custom, moto parts, machinery parts, lighting components, hardware accessories, electric motor products, etc |
| Agricultural machinery, electrical appliances, furniture hardware | ||
| 4 | Materials: | 1.Stainless Steel: SS201, SS303, SS304, SS316 etc. |
| 2.Carbon Steel: AISI 1045, 9SMnPb28 etc | ||
| 3.Brass: C36000 (C26800), C37700 (HPb59), C38500(HPb58), C27200(CuZn37), C28000(CuZn40) etc. | ||
| 4.Bronze:C51000, C52100, C54400, etc. | ||
| 5.Iron:Grey iron and ductile iron | ||
| 6.Aluminum:6061, 6063,7075,5052 etc. | ||
| 7.Magnesium Alloy: AZ31, AZ61, AZ91 | ||
| 8.Plastic: PEEK, POM, NYLON, TEFLON, ABS…etc | ||
| 9.Titanium: TC4 | ||
| 5 | Machining: | Turning, Milling, Drilling, Grinding, Cleaning, |
| 6 | Main equipments | CNC lathe, CNC milling, Stamping machine, |
| Automatic lathe, Grinder, Tapping | ||
| Drilling machine…etc | ||
| 7 | Measuring & Testing equipments | CMM, Profile Projector, Rockwell Hardness Tester, CZPT Hardness Tester, Roughness Tester, Micrometers, height gauge, Calipers… etc. |
| 8 | Accuracy: | Accuracy Of Machining:+/-0.005mm |
| Accuracy Of Grinding:+/-0.005mm | ||
| Surface Roughness:Ra0.8 | ||
| Parallelism:+/-0.005mm | ||
| Verticality:+/-0.005mm | ||
| Concentricity:0.003mm | ||
| 9 | Surface Treatment: | Polishing, Deburring, Chrome Plating, Ni Plated, Zinc plated, Silver platinng |
| Anodizing various colors, Carburizing Nitriding, Heat Treatment, etc… | ||
| 10 | MOQ | 1 ~10000pcs. |
| 11 | DRW Format: | DWG, PDF, IGS, STEP, SLDPRT, SLDDRW, PRT, DRW, DXF, X_T, etc… |
| 12 | QC System: | 100% Inspection before shipment |
| 13 | Certificate | ISO9001: 2015, SGS Factory Audit |
| 14 | Payment Term: | 30% T/T + 70% T/T, Western Union, PayPal, L/C |
| 15 | Trade Terms: | FOB, CIF, L/C |
| 16 | Lead time: | 7~45 days after confirming |
| 17 | Sample Lead Time: | 3-7 Working Days |
| 18 | Transport Package: | Foam/wooden box, Anti-rust paper, Small box and carton, Pallets… etc. |
| 19 | Origin: | China |
| 20 | Our Advantages: | Reliable Quality |
| Competitive Price | ||
| High precision, high quality, high accurancy | ||
| Continuous Improvement | ||
| Defect-Free Products | ||
| On-Time Delivery | ||
| Customer Satisfaction | ||
| Excellent After-Sales Service |
Production Process
Company Profile
Quality Control Standards
To consistently exceed customer expectations, qua lity control and assurance is achieved through
Comprehensive written procedures and policies
Fully equipped inspection department
Detailed records of incoming raw materia
Consistent calibration and labeling of inspection tools
Analysis of root cause of non-conformances.
Staff members being strongly encouraged to sugqest improvements in methods, materials and suppliers
Certifications
Packaging & Shipping
FAQ
Q: Are you trading company or manufacturer ?
A: We are direct factory with experienced engineers and employees as well as well-organized workshop.
Q: How long is your delivery time?
A: Generally it is 5-10 days if the goods are in stock. or it is 15-20 days if the goods are not in stock, it is according to quantity.
Q: Do you provide samples ? is it free or extra ?
A: Yes, the sample fee depends on the product geometry, and the fee will be returned to your bulk order.
Q: How long can I get the sample?
A: Depends on your part geometry, normally within 3-7 days.
Q: How long is your delivery time?
A: Sample 3-7days; Mass production order 7-45 days depends on quantity and part complexity.
Q: What is your terms of payment ?
A: Payment=1000USD, 30% T/T in advance ,balance before shippment.
Q: What’s kinds of information you need for a quote?
A: Kindly please provide the product 2D drawing with PDF or DWG format and 3D drawings with STEP or IGS or X_T format, and other requirements like: surface treatment, quantity…etc.
Q: What is your standard PO procurement process flow?
A: Prototyping —-> FA approval —-> Quality Control Plan —> Manufacturing Process Instruction —> Batch Production —> Inspection —> Shipping
Q: What shall we do if we do not have drawings?
A. Please send your sample to our factory, then we can copy or provide you better solutions. Please send us pictures or drafts with dimensions (Length, Height, Width), CAD or 3D file will be made for you if placed order.
Q: Will my drawings be safe after sending to you?
A: Yes, we can CZPT the NDA before got your drawing and will not release to the third party without your permission
Q: Is it possible to know how are my products going on without visiting your company?
A: We will offer a detailed production schedule and send weekly reports with digital pictures and videos which
show the machining progress
Q: How to enjoy the OEM services?
A: Usually, base on your design drawings or original samples, we give some technical proposals and a quotation
to you, after your agreement, we produce for you.
If you have another question, pls feel free to contact us
| Application: | Fastener, Auto and Motorcycle Accessory, Hardware Tool, Machinery Accessory, Medical Spare Part, Telecommunication Part |
|---|---|
| Standard: | GB, EN, API650, China GB Code, JIS Code, TEMA, ASME |
| Surface Treatment: | Anodizing |
| Production Type: | Single Production |
| Machining Method: | CNC Milling |
| Material: | Nylon, Steel, Plastic, Brass, Alloy, Copper, Aluminum, Iron |
| Samples: |
US$ 100/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

Designing Injection Molded Parts
Injection molded parts are designed to work together to form a whole. While the small plastic toys like Legos aren’t typically fabricated for assembly, these products still require precision measurements. For this reason, the designs of injection molded parts should be perfected for manufacturing. The designs should also minimize error potential.
Design considerations for injection molded parts
When designing injection molded parts, it’s essential to consider the wall thickness of the part. Ideally, the wall thickness is uniform across the entire part. This allows the entire mold cavity to fill without restriction, and reduces the risk of defects. Parts that don’t have uniform wall thickness will have high stresses at the boundary between two sections, increasing the risk of cracks, warping, and twisting. To avoid such stresses, designers can consider tapering or rounding the edges of the part to eliminate stress concentration.
The wall thickness of the injection molded part is important because it affects many key characteristics. Therefore, it is critical to take proper care in choosing the wall thickness to avoid costly delays caused by mold problems or mold modification. The nominal wall thickness should be determined based on the function and stress requirements of the part. Similarly, the minimum wall thickness should be calculated based on acceptable stress. Too thin a wall can result in air traps and excessive plastic pressure.
Injection molded parts that have sharp corners are a common cause of defects. Sharp corners create stress concentrations, poor flow patterns, and increased injection mold wear. To minimize these problems, designers should keep inside corners and outside corners at half the wall thickness. This will help minimize stress and ensure the integrity of the part.
Another important design consideration for injection molded parts is the thickness of the ribs. They should be at least two-thirds of the outer wall. Thicker ribs may result in sink marks on the outer surface. Undercuts also complicate the mold design and increase the cost of the part.
Tolerance variation is also an important consideration. It depends on materials, process control, and tool design. Tolerance variation varies from molder to molder, and designers should discuss critical tolerance requirements with molders. If the part has to be manufactured to a particular tolerance, designers should consider options for mold revisions to minimize the tolerance variance. Additionally, designers may need to intentionally design extra clearance. To compensate for such variation, the molder may remove some steel or modify the design. In some cases, interference can be solved by welding.
Design considerations for injection molded parts should be discussed with material science professionals early in the design process. This is critical because changes to the mold design can be costly. Therefore, achieving the best possible result is critical. By following design guidelines, manufacturers can avoid common defects. A uniform wall thickness is also important because non-uniform thickness can lead to warping the part as it cools.
Another important factor for injection molded parts is the flowability of the material in the mold cavity. The resin should be able to flow easily around rounded corners. For example, a molded part with a curved undercut will not eject properly from the mold if there’s no space between the two sides. For this reason, designers should consider the flowability of the molded material before deciding on a design.
Adding a runner system to an injection molding machine
There are two main types of runner systems: hot runner systems and cold runner systems. In a hot runner system, a runner nozzle delivers the molten plastic into the mold cavity. A cold runner system does not require the use of a nozzle and acts as a conduit for the molten plastic.
The design of a hot runner mold should balance the activity of plastic solution and mold cavities. Ideally, a mold with two cavities is better balanced than one with three. However, it is important to remember that a three-cavity mold requires a manifold balance of human activities.
Plastic mold runner systems are crucial for ensuring consistent fill rates and pressure. Whether you are producing single or multiple-cavity plastic parts, a runner system will keep your processes consistent. When choosing a runner system, make sure you have the right one for your application.
Hot runner systems can reduce cycle times by as much as 10 to 30 percent. They help improve quality control and minimize material waste by keeping the plastic molten throughout the molding process. Moreover, they help save on plastic raw materials and energy. These features make them ideal for large production lines.
A hot runner system can also help prevent overfilling a cavity. Make sure that the volume of the hot runner is equal to the volume of the mold cavity. Otherwise, the plastic solution will be trapped inside the hot runner for too long and decompose.
Hot runner systems come in many varieties. One type of hot runner system is called the sprue hot runner system. This system uses a mechanical valve to open and close a nozzle. This type of hot runner is more effective and efficient than a general-purpose hot runner. However, it is also more expensive.
In a three-plate mold, the runner system is positioned between the core and cavity plates. When the mold is opened, the runner system automatically separates from the molded part. This eliminates the need for manual labor, but increases the cost of tooling.
The runner system is important for producing parts that are both thin and thick. The runner should be narrow but large so as not to create voids and improve the overall performance of the final product. Runner systems are also important for reducing the amount of energy needed to form and regrind the material.
A hot runner system is one way to improve the speed and accuracy of plastic molding. It helps avoid problems with waste by reducing the amount of plastic wasted. Furthermore, a hot runner system also prevents expensive repairs. By adding a runner system to an injection molding system, you will ensure better quality and precision, and avoid unnecessary downtime and costly repairs.
Hot runner systems are ideal for high-volume productions. However, they require a higher level of maintenance. In addition, hot runner systems are difficult to clean and often leave waste material. Hidden runners may also be inconvenient to remove, especially when changing materials or colors. They can also lead to sticking issues if they are made from thermally sensitive materials.
Using a thermally isolated cold injection unit
Thermostatic control of temperature in an injection molding process can make a significant impact on part quality. High mold temperatures should be regulated by using a temperature-controlled cooling unit. These devices are equipped with pumping systems and internal heaters. The temperature of the injected plastic determines the plastic’s flow characteristics and shrinkage. Temperature also influences the surface finish, dimensional stability, and physical properties of the finished product.
A thermally isolated cold injection unit allows mold operators to mold parts at lower temperatures than a conventional injection molding machine. The injection mold itself is composed of two steel halves. The two halves are connected by a mechanical hinge. During injection molding, a small amount of plastic is forced into the mold cavity. The injected plastic is then allowed to cool into a solid state. The molded part then falls out of the mold halves. The injected part then enters a bin to be collected.
The heat/cool injection molding process can improve the aesthetics of molded parts significantly. The effects of this technique are particularly apparent with amorphous resins, which do not form a skin during the injection phase. The molded parts have a higher gloss than with conventional molding techniques.
This process requires less clamping force than conventional injection molding and offers more design freedom. It also increases process capacity and materials savings. The process control for this process is more complex, with variables such as the amount of melt injection, water pressure, and water injection delay time.
The angle of repose is another criterion. A low angle indicates that the pellets are free-flowing, while an angle above 45deg indicates that the pellets are not free-flowing. This is important when processing nylon resins.
Plastic injection molding has made huge advances in recent decades. Today, most injection molds fall into one of two types: hot runner and cold runner. Each has its advantages and disadvantages. Understanding how they differ will help you decide which method is right for you.
Injection molding is a highly effective manufacturing process that gives manufacturers a competitive edge over their competition. Using this process produces high-quality plastic and metal parts with minimal waste and a low cycle time. The process is also extremely accurate and produces products with the perfect blend of flexibility and strength.

editor by CX 2023-04-20
China OEM ABS Injection Molded CZPT Parts of Injection injection mold for parts
Product Description
ABS Injection Molded CZPT Parts of Injection
Advantages:
1. Free design and free sample.
2. CZPT NDA.
3. ISO Certificated with the strict quality control system.
4. 10+ Years OEM&ODM Platic Injection Molding Parts manufacturing experience.
5. Good at spoken English and phone call communication.
6. One stop solution and drop shipment for online sellers.
Product Description
| Product Description | ODM plastic injection molding |
| Plastic Materials: | PS, ABS, PP, PVC, PMMA, PBT, PC, POM, PA66, PA6, PBT+GF, PC/ABS, PEEK, HDPE, TPU, PET, PPO,…etc. |
| Standard: | ISO9001:2008 |
| Quality: | RoSH and SGS standard |
| Feature: | Non marking and Non flash |
| Size: | According to your 2D, 3D Drawing |
| Color,Quantity,Unit price,Tooling cost,Tooling size: | To be discussed |
| Package: | Standard exported Wooden box packed, Fumigation process(upon required) |
| Mold Building Lead Time: | T1, 15-25 Working days, Part measurement report (upon required). |
| Export Country: | All countries are reachable. |
| Experience: | 13 years experience in plastic injection mold making and plastic prouducts produce. |
| Mould Base: | Hasco Standard, European Standard, World Standard |
| Mould Base Material: | LKM, FUTA, HASCO, DME,…etc. Or as per Customer’s Requirment. |
| Surface Finish: | Texture(MT standard), High gloss polishing |
| Cavity/Core Steel: | P20, 2311, H13, 2344, Starvax 420, 236, AdC3, S136, 2312, 2379, 2316, 2083, Nak80, 2767 …etc. |
| Hot/ Cold Runner | HUSKY, INCOE, YDDO, HASCO, DME, MoldMaster, Masterflow, Mastip, ZheJiang made brand…etc. |
| Mould Life: | 5,000 to 1,000,000 Shots. (According to your working environment.) |
| Design & Program Softwares: | CAD, CAM, CAE, Pro-E, UG, Soild works, Moldflow, CATIA….etc. |
| Equipments: | High speed CNC, Standard CNC, EDM, Wire Cutting, WEDM, Grinder, Plastic Injection Molding Machine for trial out mold from 50-3000T available. |
Products show
Services
Plux Industry provides service of prototype making, mold design, mold production, mass production and assembly service in house. Our experience range from simple design to challenging technical parts.
Company Profile
Workshops and Equipments
Cooperating Customers
Packaging & Shipping
FAQ
1. Q: Where is your company or factory?
A: We are located in HangZhou, We have our own factory.
2. Q: Can you make design?
A: We’ll be glad to make mould designs for you, and for free. Complete mould 2D & 3D will supply to clients after order.
3. Q: What type of mould you can make?
A: We can make all kinds of plastic injection mould, especially rich Experience
on household moulds.
4. Q: What type of files can you accept?
A: We can accept different types of files such as DXF, DWG, IGS, IGES, STP, PRT, X_T, PDF.
5. Q: What type of steel do you use?
A: P20, P20 (H), 718, 718 (H), 2738, 2738 (H), H13, NAK80,2344, S136, 4Cr13, S55C,C45#
6. Q: What kind of material you use for test mould and production?
A:PP, PC, PS, PE, HDPE, POM, PA6, PA66, PA6+GF, ABS, TPU, TPE, PVC, SMC, BMC,
We have rich experience for manufacturing product with these materials and know
how to adjust Parameter to get the perfect product.
7. Q: How to send sample?
A: The quotation we offer you including The cost of sample delivery 2 times samples by
DHL, UPS, EMS,FEDEX or TNT.
| Plastic Type: | Thermosetting Plastic |
|---|---|
| Plastic Form: | Granule |
| Molding Method: | Injection Molding |
| Material: | ABS, PP, Nylon, PC, POM, TPU, PE, PBT, ABS+PC |
| Customization: | Available |
| Drawing: | Provide by Customer(Dxf/Dwg/Prt/Sat/Iges/Step etc) |
| Samples: |
US$ 1/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
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Advantages of Injection Moulding
Whether you’re considering an injection molded part for your next project or need to replace an existing one, there are a few factors you should consider. These include design, surface finishes, tooling costs, and material compatibility. Understanding these factors can help you make the right decision. Read on to learn more about the advantages of injection molding and how to get started.
Design factors
One of the most critical design factors for injection molded parts is the wall thickness. The wall thickness affects many key characteristics of the part, from its surface finish to its structural integrity. Proper consideration of this factor can prevent costly delays due to mold issues or mold modifications. To avoid this problem, product designers must carefully consider the functional requirements of the part to determine the minimum and nominal wall thickness. In addition, they must also consider acceptable stress levels, since parts with excessively thin walls may require excessive plastic pressure and may create air traps.
Another factor to consider when designing a part is its ejection and release capabilities. If the part is released from the mold, the tools should be able to slide the plastic out. Injection molds usually have two sides, one of which is ejectable, and another that remains in the mold. In some cases, special features are required to prevent part release, such as a ramp or a gusset. These design features can increase the design flexibility, but they can also increase the cost of the mold.
When designing injection molded parts, the engineering team first determines the key design elements. These elements will make sure the injection process goes as smoothly as possible. This includes factors like wall thickness, rib design, boss design, corner transition, and weld line, among others. The engineering team will then perform a design for manufacturability analysis and, if all is well, can start building and testing the mold.
Material compatibility
Several factors can affect material compatibility of injection molded parts. When molding plastic parts, it is important to choose a material that is compatible with the part’s intended purpose. Many injection molding processes require that the two main plastic materials used are compatible with each other. This is the case in overmolding and two-shot injection molding.
The material you use to make an injection molded part will significantly impact the tolerance of the finished product. This is why material selection is as important as the design of the part. Many types of plastic resins can be used for injection molding. In addition, many of these resins can be modified or strengthened by adding additives, fillers, and stabilizers. This flexibility allows product teams to tailor the material to achieve desired performance characteristics.
One of the most common thermoplastics is polypropylene. It is extremely durable and has good impact strength and moisture resistance. This material is also recyclable and does not react with food.
Tooling costs
One of the largest costs for manufacturing injection molded parts is tooling. For an OEM, tooling costs can range from $15K per part for a simple part to $500K for a mold with complex geometry. Tooling costs vary based on the type of steel used and the production volume of the part.
To get a reasonable estimate, companies should have a final design, preliminary design, and sample part to hand when requesting quotes. The dimensions and complexity of the cavity in a mold are crucial in determining the tooling cost, as are the part tolerances. Part tolerances are based on the area covered by the part and its functions within the mold.
The type of mold you need can also impact your tooling costs. Injection molding machines can accommodate many different kinds of molds. Some molds are made from a single mold, while others require multiple molds. Some molds can be complicated, making them unmanufacturable, which in turn drives up the cost of tooling.
The costs for tooling for injection molding are not well known, but they do add up quickly. Many product development teams tend to consider the cost of the injection molding process in terms of direct materials, machine time, and labor, but that cost model often fails to take into account additional components.
Surface finishes
Surface finishes on injection molded parts are often used to mask defects, hide wear and tear, or enhance a product’s appearance. These finishes can also be useful when the product will come in contact with people’s hands. The surface texture you choose will depend on your desired functionality as well as the way you want to use the product. Generally, rougher textures provide better grip while masking minor molding imperfections. However, they can also make a product more difficult to release from the mold. This means that you may have to increase the draft angle of the mold. In order to get the best surface finish, the toolmaker and product designer must collaborate closely early in the design process.
There are several different surface finishes that can be used for injection molded parts. One type is known as the B-grade finish, and is compatible with a wide variety of injection molding plastics. Another type of finish is called a stone polishing process, and is ideal for parts that have no aesthetic value.
Overhangs
The injection moulding industry refers to overhangs on injection molded parts as “undercuts,” and these can lead to design instability. To minimize undercuts, the design must be parallel to the part’s surface. If an undercut is present, a zigzag parting line can be used.
The overhang is typically a few millimeters shorter than the surface of the mold. It is generally made from a lower-cost plastic material than the part’s surface area. The material used for the overhang should have sufficient strength to fulfill its function. An overhang will also help to prevent the piece from deforming or cracking.
Injection molding can create overhangs around the perimeter of a part. Overhangs are not always necessary; they can be added to parts as desired. Adding an overhang, however, will add substantial tooling costs. As a result, it is better to minimize the overall thickness of a design. However, in some cases an overhang can be useful to make the part look more attractive.
For parts with complex geometries, there are a few options for overhangs. Some manufacturers use side-action molds to form more complex shapes.
CNC machining
CNC machining of injection molded parts is a process that helps manufacturers achieve precise surfaces and shapes for their products. This process typically begins with the milling of the tooling, which is typically made of aluminum or steel. This tooling is then placed in a CNC mill. This machine carves the negative of the final plastic part, making it possible to achieve specific surface finishes. The process can be adapted to create a part with a complex structure or special features.
CNC machining allows the manufacturer to produce high-performance parts. This is possible because MIM parts do not experience induced stresses or internal pressure during the manufacturing process. Furthermore, the parts produced by MIM are more durable than CNC parts. Despite their advantages, CNC machining has its limitations, especially when it comes to design freedom and intricacy. This factor is largely dependent on the software used by the manufacturer or designer.
One drawback of CNC machining is its higher cost. Compared to injection molding, CNC machining is more expensive per part. The reason is that the initial mold cost is relatively high and is spread over a large number of parts. Once the injection molding process has been completed, the cost of the parts produced by this process becomes more competitive with those produced by machined parts. However, the cost gap increases with the volume of parts produced. This cost crossover generally occurs in quantities of at least 100 parts and can reach a maximum of 5000 parts.
Production volume
The production volume of injection molded parts varies depending on the material being used. Large volumes of parts are expensive to produce, while small quantities can be produced for low cost. Injection molding requires a precise mold, which is CNC-machined from tool steel or aluminum. The mold has a negative of the part that is injected, a runner system, and internal water cooling channels to aid in cooling the part. Recent advances in 3D printing materials have made it possible to produce molds for low-volume injection molding. Previously, this was not financially viable due to the high cost of traditional mold making.
A mold is used to produce plastic parts. The molding process is very fast, with each cycle taking anywhere from 30 seconds to 90 seconds. After a part is molded, it is removed from the mold and placed on a holding container or conveyor belt. Injection molded parts are generally ready for use right away and require minimal post-processing. Injection molded parts have a similar design to a photograph, since the geometry is directly transferred to the part’s surface texture.
When selecting a plastic mold, it is important to determine the volume that the part will be produced at. If the volume is low, softer plastics may be used. However, as the part is molded over, its performance characteristics may degrade. In low-volume production, it is important to consider the overall complexity of the part. This includes the part’s draft, wall thickness, and surface finish.

editor by CX 2023-04-19
