Penerangan Produk
Penerangan Produk
| PLASTIC INJECTION PART BASIC INFORMATION | |
| Plastic Part Name | Industrial Power supply |
| Surface Requirement | Texture EDM SPI Chrome Coating |
| Plastic Part Resin | thermoplastic/Thermosetting |
| Tolerance Request | UP to (±0.005mm) |
| Production Quantity | Up to 1 miliion |
| Part Size range | Up to 1500mm |
| Multi Injection | Single/Double/multi color |
| Design Software | Data exchange: UG, PRO/E, SOLIDWORKS, CAITA, CAD, STP, X_T, IGS, PRT, DWG, DXF |
| Quality Assurance | Design Control, Steel Hardness Inspection Report, Steel Dimension Control Report, Mold Core and Cavity Dimension Inspection Report |
| PLASTIC INJECTION MOULD BASIC DESCRIPTION | |
| Injection System | Hot runner /Cold Runner |
| Cavitation | Single /Mutil Cavites |
| Ejector System | Pin/air Valve/Stripper plate |
| Steel Standard | ASSAB/FINKL/BOHLER/ Groditz/Buderus |
| Cooling | Baffles/Sprin Piple/3D printing water line |
| Standard Delivery | 40 days or 5 weeks |
| Standard Parts/Cylinders | DME/HASCO/PROGRESSIVE/MISUMI/Parker/HP/Merkle |
| Design Capability | DFM,Mould flow analysis,Product optimization, Full 2D & 3D mould design,Reverse engineering,Collaborative design with customer’s idea |
| Documents / Reports Provided | Fully drawing,Weekly Processing Report, Steel Dimension report, Processing Report,Sample Dimension Report. |
ACE provides plastic turnkey solution from innovative concept design to reality. ACE is able to meet our customer’s Most challenging demands through the combined use of international state-of-the-art equipment and traditional Tool-making knowledge. ACE team designers and toolmakers with collective experience constantly strive to Refine and perfect our skills. Our top performance is base on the successful execution of every single step.
“Right at the first time”.,
* Plastic processing with Medium and large processing windows
* For all thermoplastics including Filler and reinforcing materials
ACE has been a key supplier to some of the most well known automotive OEMs ACE’s infrastructure of complete resources allows our clients To focus on what’s most important to the automotive market-zero defects, and lowering overall costs. We are able to built the automotive parts as follows:
* Seat back
* Deckilid trim
* Inside Door Handle
* Door Trim
* Engine parts
* Roof Parts
* Lighting parts
* Mud Guard parts
* Air bags
* Air conditioner Components.
Our Services
ACE Molding Group is a privately owned company specializing in the design and manufacture of high-quality plastic injection molds and injection molded parts for the international market and Have been engaged in the manufacturing sector since our inception.Is an OEM/ODM factory, customized your products to meet your needs is our advantage, We are managed by a group of professionals with many years of experience in mold design, molding technology and Quality control. We have developed an excellent understanding of the technical and quality requirements needed. We build tools to fit your expectations and match your quality standards.Our team of CAD designers will ensure that your imagination is incorporated into the actual product!If you want to create prototype or mass-produce in a very specific project, we can help you achieve your vision!Our products include :
*Custom Plastic Injection Parts
*Multi-cavity plastic parts
*High Precision Molds
*Insert & over molding
*Double Short Molding
*Unscrewing Molding
*Gas-assisted Molding
*Die Casting Molding
*Prototype CHINAMFG and Low cycle CHINAMFG molding
*Gas Assist molding
*Elastomeric molding
*IML & IMD part production
*Thin wall plastic molding
*High temperature molding
*Foam Injection molding
Why Choose Us
1. We have our own design and development team and factory, with more than 14 years of product production experience. Familiar with and good at developing business with overseas market.
2. We can provide OEM/ODM services for all kinds of customers, and our professional support team will provide services for customers 24 hours a day.
3. We have a very strong quality control system to ensure the best quality of our products, the best service and competitive price.
4. Samples are always available for quality inspection and can be sent to you very quickly.
5. Design ability: design according to customer requirements.
6. We deliver goods on time and cooperate with customers sincerely.
Inspection Method
We will provide fully dimension checking before mold test.
Make sure all components and mold dimension under correct tolerance. if customer needed, we can provide all these documentation for their reference.
We define quality as total customer satisfaction. This drives us to settle for nothing less than for CHINAMFG in all aspects of our business as we continuously improve our strong compliment of our staff and processes
How To Order
Kindly contact or email us your inquiries or RFQs. One of our sales team would contact you asap and offer professional consultation on all your plastic molding needs and provide the best price that is suitable to your requirements.
Other Products
Our website lists some of our successful products, but please note that this is just 1 example on behalf of our products and services, so if you can’t see the products you want, please contact us immediately. We warmly welcome customers all over the world and are looking CHINAMFG to establishing a steady and long-term business relationship with you .
Profil Syarikat
We are managed by a group of professionals with many years of experience in mould design, molding technology and quality control. Our clients are able to communicate with us freely in English, Japanese ,German and US, Since we build exclusively for the international market, mainly Europe, Japan North & South America, we have developed an excellent understanding of the technical and quality requirements needed.
Capability – Equipment listCapacity* More than 350 sets/year
* Maximum mold weight: 20 tons
* Maximum mold size: 1600mm*900mm*900mmToleransi* Mold: 0.01mm
* Plastic part: 0.015m
|
ACE MOULDING EQUIPMENT & PRESS LIST 2571 |
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|
Department |
Major Equipment |
Name |
Specification |
Unit |
Total |
|
Mold Department |
CNC Machining Center |
ROEDERS RFM-800 Precision Centre Made in Germany |
36000/min |
2 |
14 |
|
CNC Machining Center |
ROEDERS RXP-500 Precision Centre with Renishaw online inspection Made in Germany |
50000/min |
2 |
||
|
CNC Machining Center |
ROEDERS RFM-600 Precision Centre with Renishaw online inspection Made in Germany |
42000/min |
2 |
||
|
CNC Machining Center |
ROEDERS RFM-600 Precision Centre Made in Germany |
42000/min |
2 |
||
|
CNC Machining Center |
KT-600II Precision Centre |
24000/min |
4 |
||
|
CNC Machining Center |
Shenghong ZheJiang |
8500 |
2 |
||
|
Electric Discharge Machine(EDM) |
SODICK EDM Machine |
AD30L |
4 |
11 |
|
|
SANDY EDM Machine |
ED3 |
2 |
|||
|
Wintop |
350 |
3 |
|||
|
Wintop |
DE -650 |
2 |
|||
|
Milling Machine |
Milling machine |
16SS |
8 |
9 |
|
|
Mazak |
Milling machine |
QTN150 |
1 |
||
|
Cutting Machine |
Cutting machine |
MV1200S |
3 |
3 |
|
|
Drill Press Machine |
Drill Press machine |
Z3032X10 |
1 |
1 |
|
|
Molding Department |
Plastic injection machine |
Injection machine |
Kiaming 58T |
1 |
24 |
|
Kiaming 98T |
1 |
||||
|
Kaiming128T |
4 |
||||
|
Kaiming 168 T |
2 |
||||
|
HaiTian 200T |
8 |
||||
|
ZheJiang 250T |
1 |
||||
|
CHINAMFG 220T |
1 |
||||
|
Kaiming 400T |
2 |
||||
|
Kaiming 450T |
1 |
||||
|
HaiTian 650T |
2 |
||||
|
HaiTian 1300T |
1 |
||||
|
Quality Department |
Inspection machine |
2.5D Video Measuring System |
VMS-2015F |
1 |
2 |
|
Alberlink CMM |
HR-150A |
2 |
2 |
||
organlzation
Currently possess a strong team with 140 people, including
* 32 Design & Engineers ( ≥ 10 years’ experience)
* 12 CNC programmers
* 8 project engineers
* 6 Sales people
* 5 full-time quality inspection personnel
* 4 people in logistic team
* 60 tool makers
* 13 Office worker
Workshop / Packaging &Shipping
Our factory is under ISO standards & certification.This insures productivity and total control on quality.
Our standard packaging for plastic injection parts we use PP bag plus cardboard boxes or as per customer requirements.
Our standard packaging for plastic injection mold is wooden pallets or wooden cases.
F A Q
Q: What services do you provide?
A: We manufacture plastic injection molds dan produce plastic injection parts for sampling and bulk production.We also provide mold design services.
Q: How can I contact you?
A: You can send us an inquiry via email, Alibaba,Alibaba TradeManager, WhatsApp, Skype or Wechat. We will reply to you within 24 hours.
Q: How can I get a quotation?
A:After receving your RFQ, we will reply to you within 2 hours. In your RFQ, please provide the following information and data in order for us to send you competitive pricing based on your requirements.a) 2D part drawings in PDF or JPG format & 3D part drawings in UG, PRO/E, SOLIDWORKS, CATIA, CAD, STP, X_T, IGS, PRT, DWG, or DXFb) Resin information (Datasheet)c) Annual quantity requirement for parts
Q: What shall we do if we don’t have part drawings?
A: You can send us your plastic part samples or photos with dimensions and we could provide you our technical solutions. We will create .
Q: Can we get some samples before mass production?
A: Yes, we will send you samples for confirmation before start of mass production.
Q: Due to time difference with China and overseas, how can I get information about my order progress?
A: Every week we send weekly production progress report with digital pictures and videos that shows the production progress.
Q: What is your leadtime?
A: Our standard leadtime for mold production is 4 weeks.For CHINAMFG is 15-20 days depending on the quantity.
Q: What is your payment term?
A: 50% as payment deposit, 50% balance will be paid before shipping. For small amount, we accept Paypal, Paypal commission will be added to the order. For big amount, T/T is preferred
Q: How do you deliver the goods?
A: We have our own logistics department that could provide shipping costs via Sea or Air freight, Incoterms EXW, FOB, DDP, DDU etc. Or we can work with your appointed shipping forwarder.
Q: How can I guarantee our quality?
A: During mold making, we do material and part inspection. During part production, we do 100% full quality inspection
before packaging and reject every parts that is not according to our quality standard or the quality approved by our client.
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| Waranti: | 1year |
|---|---|
| Mod Pembentukan: | Acuan Suntikan |
| Surface Finish Process: | Electroplating |
| Sampel: |
US$ 1/Piece
1 Keping (Pesanan Minimum) | Contoh Pesanan |
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| Penyesuaian: |
Tersedia
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|---|
.kos-penghantaran-tm .status-tm-mati{latar belakang: tiada;padan:0;warna: #1470cc}
| Kos Penghantaran:
Anggaran pengangkutan setiap unit. |
tentang kos penghantaran dan anggaran masa penghantaran. |
|---|
| Kaedah Pembayaran: |
|
|---|---|
|
Bayaran Awal Bayaran Penuh |
| Mata wang: | US$ |
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| Pulangan & bayaran balik: | Anda boleh memohon bayaran balik sehingga 30 hari selepas penerimaan produk. |
|---|

Apakah faktor yang mempengaruhi reka bentuk dan perkakasan bahagian yang dibentuk suntikan untuk aplikasi tertentu?
Beberapa faktor memainkan peranan penting dalam mempengaruhi reka bentuk dan perkakasan bahagian yang dibentuk suntikan untuk aplikasi tertentu. Berikut adalah faktor utama yang perlu dipertimbangkan:
1. Keperluan Fungsi dan Prestasi:
Keperluan fungsi dan prestasi bahagian yang dimaksudkan sangat mempengaruhi reka bentuk dan perkakasannya. Faktor seperti kekuatan, ketahanan, ketepatan dimensi, rintangan kimia dan rintangan suhu adalah pertimbangan penting. Reka bentuk bahagian mesti dioptimumkan untuk memenuhi keperluan ini sambil memastikan fungsi dan prestasi yang betul dalam aplikasi yang dimaksudkan.
2. Pemilihan Bahan:
Pemilihan bahan untuk pengacuan suntikan bergantung pada aplikasi khusus dan keperluannya. Bahan yang berbeza mempunyai sifat yang berbeza-beza, seperti kekuatan, fleksibiliti, rintangan haba, rintangan kimia dan kekonduksian elektrik. Pemilihan bahan mempengaruhi pertimbangan reka bentuk dan perkakas, kerana geometri dan struktur bahagian mesti serasi dengan sifat bahan yang dipilih.
3. Kerumitan dan Geometri Bahagian:
Kerumitan dan geometri bahagian tersebut memberi kesan yang ketara kepada reka bentuk dan perkakasannya. Bahagian kompleks dengan ciri-ciri rumit, potongan bawah, dinding nipis atau ketebalan yang berbeza-beza mungkin memerlukan reka bentuk perkakas dan acuan khusus. Geometri bahagian tersebut mesti dipertimbangkan dengan teliti untuk memastikan pengisian, penyejukan, lontaran dan kestabilan dimensi acuan yang betul semasa proses pengacuan suntikan.
4. Kos dan Kecekapan Pembuatan:
Reka bentuk dan perkakasan bahagian yang diacukan suntikan juga dipengaruhi oleh pertimbangan kos pembuatan dan kecekapan. Ciri reka bentuk yang mengurangkan penggunaan bahan, meminimumkan masa kitaran dan mengoptimumkan penggunaan mesin pengacuan suntikan dapat membantu menurunkan kos pengeluaran. Reka bentuk perkakasan yang cekap, seperti acuan berbilang rongga atau acuan keluarga, dapat meningkatkan produktiviti dan mengurangkan kos setiap bahagian.
5. Kebolehbentukan dan Reka Bentuk Acuan:
Kebolehacuan bahagian tersebut, termasuk faktor seperti sudut draf, ketebalan dinding dan lokasi pintu pagar, mempengaruhi reka bentuk acuan. Bahagian tersebut hendaklah direka bentuk untuk memudahkan aliran plastik cair yang betul semasa suntikan, memastikan penyejukan yang seragam dan membolehkan lontaran bahagian yang mudah. Reka bentuk perkakas, seperti bilangan rongga, reka bentuk pintu pagar dan sistem penyejukan, dipengaruhi oleh keperluan kebolehacuan bahagian tersebut.
6. Piawaian Kawal Selia dan Industri:
Aplikasi khusus, terutamanya dalam industri seperti automotif, aeroangkasa dan perubatan, mungkin mempunyai piawaian kawal selia dan industri yang mempengaruhi pertimbangan reka bentuk dan perkakas. Pematuhan terhadap piawaian ini mengenai bahan, dimensi, keselamatan dan keperluan prestasi adalah penting dan boleh memberi kesan kepada pilihan reka bentuk dan spesifikasi perkakas.
7. Pemasangan dan Integrasi:
Jika bahagian yang dibentuk melalui suntikan perlu dipasang atau disepadukan dengan komponen atau sistem lain, reka bentuk dan perkakasan mesti mempertimbangkan proses dan keperluan pemasangan. Ciri-ciri seperti padanan snap, mekanisme saling kunci atau permukaan padanan tertentu boleh digabungkan ke dalam reka bentuk bahagian untuk memudahkan pemasangan dan penyepaduan yang cekap.
8. Estetika dan Penjenamaan:
Dalam produk pengguna dan industri tertentu, penampilan estetik dan penjenamaan bahagian mungkin penting. Pertimbangan reka bentuk seperti kemasan permukaan, tekstur, warna dan kemasukan logo atau elemen penjenamaan mungkin merupakan faktor penting yang mempengaruhi keputusan reka bentuk dan perkakasan.
Secara keseluruhannya, reka bentuk dan perkakasan bahagian yang dibentuk dengan suntikan untuk aplikasi tertentu dipengaruhi oleh gabungan keperluan fungsian, pertimbangan bahan, kerumitan bahagian, kos dan kecekapan pembuatan, kebolehbentukan, piawaian kawal selia, keperluan pemasangan dan faktor estetik. Adalah penting untuk mempertimbangkan faktor-faktor ini dengan teliti untuk mencapai reka bentuk bahagian yang optimum dan pengeluaran pengacuan suntikan yang berjaya.

What eco-friendly or sustainable practices are associated with injection molding processes and materials?
Eco-friendly and sustainable practices are increasingly important in the field of injection molding. Many advancements have been made to minimize the environmental impact of both the processes and materials used in injection molding. Here’s a detailed explanation of the eco-friendly and sustainable practices associated with injection molding processes and materials:
1. Material Selection:
The choice of materials can significantly impact the environmental footprint of injection molding. Selecting eco-friendly materials is a crucial practice. Some sustainable material options include biodegradable or compostable polymers, such as PLA or PHA, which can reduce the environmental impact of the end product. Additionally, using recycled or bio-based materials instead of virgin plastics can help to conserve resources and reduce waste.
2. Recycling:
Implementing recycling practices is an essential aspect of sustainable injection molding. Recycling involves collecting, processing, and reusing plastic waste generated during the injection molding process. Both post-industrial and post-consumer plastic waste can be recycled and incorporated into new products, reducing the demand for virgin materials and minimizing landfill waste.
3. Energy Efficiency:
Efficient energy usage is a key factor in sustainable injection molding. Optimizing the energy consumption of machines, heating and cooling systems, and auxiliary equipment can significantly reduce the carbon footprint of the manufacturing process. Employing energy-efficient technologies, such as servo-driven machines or advanced heating and cooling systems, can help achieve energy savings and lower environmental impact.
4. Process Optimization:
Process optimization is another sustainable practice in injection molding. By fine-tuning process parameters, optimizing cycle times, and reducing material waste, manufacturers can minimize resource consumption and improve overall process efficiency. Advanced process control systems, real-time monitoring, and automation technologies can assist in achieving these optimization goals.
5. Waste Reduction:
Efforts to reduce waste are integral to sustainable injection molding practices. Minimizing material waste through improved design, better material handling techniques, and efficient mold design can positively impact the environment. Furthermore, implementing lean manufacturing principles and adopting waste management strategies, such as regrinding scrap materials or reusing purging compounds, can contribute to waste reduction and resource conservation.
6. Clean Production:
Adopting clean production practices helps mitigate the environmental impact of injection molding. This includes reducing emissions, controlling air and water pollution, and implementing effective waste management systems. Employing pollution control technologies, such as filters and treatment systems, can help ensure that the manufacturing process operates in an environmentally responsible manner.
7. Life Cycle Assessment:
Conducting a life cycle assessment (LCA) of the injection molded products can provide insights into their overall environmental impact. LCA evaluates the environmental impact of a product throughout its entire life cycle, from raw material extraction to disposal. By considering factors such as material sourcing, production, use, and end-of-life options, manufacturers can identify areas for improvement and make informed decisions to reduce the environmental footprint of their products.
8. Collaboration and Certification:
Collaboration among stakeholders, including manufacturers, suppliers, and customers, is crucial for fostering sustainable practices in injection molding. Sharing knowledge, best practices, and sustainability initiatives can drive eco-friendly innovations. Additionally, obtaining certifications such as ISO 14001 (Environmental Management System) or partnering with organizations that promote sustainable manufacturing can demonstrate a commitment to environmental responsibility and sustainability.
9. Product Design for Sustainability:
Designing products with sustainability in mind is an important aspect of eco-friendly injection molding practices. By considering factors such as material selection, recyclability, energy efficiency, and end-of-life options during the design phase, manufacturers can create products that are environmentally responsible and promote a circular economy.
Implementing these eco-friendly and sustainable practices in injection molding processes and materials can help reduce the environmental impact of manufacturing, conserve resources, minimize waste, and contribute to a more sustainable future.

Bolehkah anda terangkan kelebihan menggunakan pengacuan suntikan untuk menghasilkan bahagian?
Pengacuan suntikan menawarkan beberapa kelebihan sebagai proses pembuatan untuk menghasilkan bahagian. Ia merupakan teknik yang digunakan secara meluas untuk menghasilkan komponen plastik dengan ketepatan, kecekapan dan kebolehskalaan yang tinggi. Berikut ialah penjelasan terperinci tentang kelebihan menggunakan pengacuan suntikan:
1. Ketepatan dan Kerumitan Tinggi:
Acuan suntikan membolehkan penghasilan bahagian dengan ketepatan tinggi dan perincian yang rumit. Acuan yang digunakan dalam pengacuan suntikan mampu menghasilkan bentuk yang kompleks, ciri-ciri halus dan dimensi yang tepat. Tahap ketepatan ini membolehkan pembuatan bahagian dengan toleransi yang ketat, memastikan kualiti dan kesesuaian yang konsisten.
2. Pengeluaran Besar-besaran yang Kos Efektif:
Pengacuan suntikan merupakan proses yang sangat cekap dan sesuai untuk pengeluaran berskala besar. Sebaik sahaja persediaan awal, termasuk reka bentuk dan fabrikasi acuan, selesai, proses pembuatan boleh diautomasikan. Mesin pengacuan suntikan boleh menghasilkan bahagian dengan cepat dan berterusan, menghasilkan pengeluaran bahagian yang sama dengan cepat dan berkesan kos. Keupayaan untuk menghasilkan bahagian dalam jumlah yang tinggi membantu mengurangkan kos setiap unit, menjadikan pengacuan suntikan berfaedah dari segi ekonomi untuk pengeluaran besar-besaran.
3. Kebolehgunaan Bahan:
Pengacuan suntikan menyokong pelbagai jenis bahan termoplastik, memberikan fleksibiliti dalam pemilihan bahan berdasarkan sifat yang diingini pada bahagian akhir. Pelbagai jenis plastik boleh digunakan dalam pengacuan suntikan, termasuk plastik komoditi, plastik kejuruteraan dan plastik berprestasi tinggi. Bahan yang berbeza boleh dipilih untuk mencapai ciri-ciri tertentu seperti kekuatan, fleksibiliti, rintangan haba, rintangan kimia atau ketelusan.
4. Kekuatan dan Ketahanan:
Bahagian yang diacukan suntikan boleh menunjukkan kekuatan dan ketahanan yang sangat baik. Semasa proses pengacuan suntikan, bahan cair diagihkan secara seragam di dalam acuan, menghasilkan sifat mekanikal yang konsisten di seluruh bahagian. Keseragaman ini meningkatkan integriti struktur bahagian, menjadikannya sesuai untuk aplikasi yang memerlukan kekuatan dan jangka hayat yang panjang.
5. Pemprosesan Pasca Minimum:
Bahagian yang diacu suntikan selalunya memerlukan pemprosesan pasca yang minimum. Ketepatan dan kualiti tinggi yang dicapai semasa proses pengacuan mengurangkan keperluan untuk operasi pemesinan atau kemasan tambahan yang meluas. Bahagian biasanya keluar dari acuan dengan bentuk, kemasan permukaan dan ketepatan dimensi yang diingini, sekali gus mengurangkan masa dan kos yang berkaitan dengan aktiviti pemprosesan pasca.
6. Fleksibiliti Reka Bentuk:
Pengacuan suntikan menawarkan fleksibiliti reka bentuk yang ketara. Proses ini boleh menampung geometri kompleks, perincian rumit, potongan bawah, dinding nipis dan ciri reka bentuk lain yang mungkin mencabar atau mahal dengan kaedah pembuatan lain. Pereka bentuk mempunyai kebebasan untuk mencipta bahagian dengan bentuk dan keperluan fungsian yang unik. Pengacuan suntikan juga membolehkan penyepaduan berbilang komponen atau ciri ke dalam satu bahagian, mengurangkan keperluan pemasangan dan potensi titik kegagalan.
7. Prototaip Pantas:
Pengacuan suntikan juga digunakan untuk prototaip pantas. Dengan menghasilkan prototaip berfungsi dengan cepat menggunakan proses dan bahan yang sama seperti bahagian pengeluaran akhir, pereka dan jurutera boleh menilai bentuk, kesesuaian dan fungsi bahagian tersebut pada awal kitaran pembangunan. Prototaip pantas dengan pengacuan suntikan membolehkan lelaran yang lebih pantas, mengurangkan masa pembangunan dan membantu mengenal pasti dan menangani isu reka bentuk sebelum komited kepada pengeluaran berskala penuh.
8. Pertimbangan Alam Sekitar:
Pengacuan suntikan boleh mempunyai kelebihan alam sekitar berbanding proses pembuatan lain. Proses ini menghasilkan sisa yang minimum kerana bahan berlebihan boleh dikitar semula dan digunakan semula. Bahagian yang dibentuk suntikan juga cenderung ringan, yang boleh menyumbang kepada penjimatan tenaga semasa pengangkutan dan mengurangkan impak alam sekitar secara keseluruhan.
Secara ringkasnya, pengacuan suntikan menawarkan beberapa kelebihan untuk menghasilkan bahagian. Ia memberikan ketepatan dan kerumitan yang tinggi, pengeluaran besar-besaran yang kos efektif, fleksibiliti bahan, kekuatan dan ketahanan, keperluan pemprosesan pasca minimum, fleksibiliti reka bentuk, keupayaan prototaip pantas dan pertimbangan alam sekitar. Kelebihan ini menjadikan pengacuan suntikan proses pembuatan yang sangat diingini untuk pelbagai industri, membolehkan pengeluaran bahagian plastik berkualiti tinggi dengan cekap dan ekonomik.


editor by CX 2024-02-15
