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GOODBO MOULD LIMITED is a professional manufacturer with over 20 years of experience in the mold industry. We have always been regarded by global customers as gold manufacturers and suppliers. Our production factory has advanced facilities for molding, screen printing, painting, assembly, packaging, and testing.

We are proud of our integrated production system, research and development, design, production, and high-quality control processes. The principle of GoodBo Mould is to ensure quality first and reputation first. GoodBo Mould has global customers such as Haier,Nissan,HONDA,KONKA,HP,Sony,Media,Hyundai,Samsung,etc.



Product Name oem polymer injection molds
Plastic Materials PBTP(poly butylene terephthalate),CA(cellulose acetate),LDPE(low density polyethylene) ,...etc.
Standard ISO9001
Place of Origin
Shenzhen,Guangdong
Other materials Rubber, Slilconce rubber, LSR,Aluminum, Zinc,Copper...Metal...etc.
Quality RoSH and SGS standard
Feature Non marking and Non flash
Size
According to your 2D, 3D Drawing
Packaging  Size:

224 * 133 * 234

Please consult us for specific details

Package
Standard exported Wooden box packed, Fumigation process(upon required)
Mold Building Lead Time
4 - 5 weeks, Part measurement report (upon required)
Export region
America,Africa,Oceania
Export Country
Israel,New Zealand,San Marino,Greece, ...etc.
Surface treatment
Polish. Etched. Texture
Experience
15 years experience in plastic injection mold making and plastic parts produce.
Mould making technology
CNC Programming,2D Modelling...etc.
Hot/ Cold Runner
HUSKY, INCOE, YDDO, HASCO, DME, MoldMaster, Masterflow, Mastip...etc.
Mould Life
500000 Shots. (According to your working environment.)
Equipments
Milling machine,Stamping equipment,Grinding machine,EDM ,Wire Cuting Machine,Drilling machines...etc.
Lead time (days)
To be negotiated
 Please note: The above table data is for reference only. For specific information, please contact us.

GoodBo Mould is one of the leading oem polymer injection molds manufacturers in China, and our mission is to provide customers with high-quality products and the highest quality service.

At GoodBo Mould we fully test all molds in-house. Trial reports and process data are provided to the client for rapid start up and all clients can be assured of tight quality control that guarantees a quality product. Mold trial run samples will be provided together with inspection reports.

We offer clients a wide range of materials to meet their product specifications, including the following:ABS(acrylonitrile-butadiene-styrene copolymer),PP(polypropylene),CA(cellulose acetate),PA(polyamide),PETP(poly ethylene terephthalate),PVC(poly vinyl chloride),GPS(general polystyrene),PC(polycarbonate),TPE(thermoplastic),POM(polyformaldehyde),PUR(polyurethane),PBTP(poly butylene terephthalate),LDPE(low density polyethylene),PE(polyethylene),PPS(poly phenylene sulfide), etc.

oem polymer injection molds---FAQs Guide
1.What kind of coatings are used for oem polymer injection molds surfaces to reduce wear and tear?
2.What are the advantages and disadvantages of using a 3D printed oem polymer injection molds?
3.About oem polymer injection molds quality system
4.Are there any special solutions for making oem polymer injection molds with deep walls or complex shapes?
5.Does the oem polymer injection molds design comply with industry standards and regulations?
6.What is the production capacity of the factory for oem polymer injection molds?
7.What types of machines are needed to produce a oem polymer injection molds?
8.What is the size of the oem polymer injection molds cavity and how does it affect the moulding process?
9.what is mould?
10.What type of runner and gate systems are incorporated into the oem polymer injection molds design?
11.How does shrinkage of the material being moulded affect the finished product?

1.What kind of coatings are used for oem polymer injection molds surfaces to reduce wear and tear?

Our oem polymer injection molds products undergo strict quality control to ensure customer satisfaction.Common coatings used for mould surfaces to reduce wear and tear include hard chrome plating, electroless nickel plating, and diamond-like carbon (DLC) coatings. Hard chrome plating is a hard, wear-resistant coating that is applied to the mould surface to reduce friction and wear. Electroless nickel plating is a corrosion-resistant coating that is applied to the mould surface to reduce wear and tear. Diamond-like carbon (DLC) coatings are a type of hard, wear-resistant coating that is applied to the mould surface to reduce friction and wear.

2.What are the advantages and disadvantages of using a 3D printed oem polymer injection molds?

We should enjoy a good reputation in the industry, and we can increase the added value of the products of cooperative customers through technological innovation.Advantages:
1. Cost-Effective: 3D printed moulds are much cheaper than traditional moulds, making them a great option for small businesses and startups.
2. Quick Turnaround: 3D printed moulds can be produced quickly, allowing for faster product development and prototyping.
3. Versatility: 3D printed moulds can be used to create complex shapes and designs that would be difficult to achieve with traditional moulds.
4. Customization: 3D printed moulds can be customized to fit specific needs, allowing for greater flexibility in product design.
Disadvantages:
1. Limited Durability: 3D printed moulds are not as durable as traditional moulds and may not be able to withstand the same level of wear and tear.
2. Limited Materials: 3D printed moulds are limited to the materials that can be used in the printing process, which may not be suitable for certain applications.
3. Limited Accuracy: 3D printed moulds may not be as accurate as traditional moulds, which can lead to imperfections in the finished product.
4. Limited Finishes: 3D printed moulds may not be able to achieve the same level of finish as traditional moulds, which can affect the overall quality of the product.

3.About oem polymer injection molds quality system

We define quality as total customer satisfaction and actively deploy the push of the work for components and management standardization.Excellent and adequate processing equipments, and normalized and efficient production management are the guarantee for mould quality and delivery.

4.Are there any special solutions for making oem polymer injection molds with deep walls or complex shapes?

Our products & services cover a wide range of areas and meet the needs of different fields.Yes, there are several special solutions for making molds with deep walls or complex shapes. These include using a CNC machining process, 3D printing, vacuum forming, and injection molding. Each of these processes has its own advantages and disadvantages, so it is important to consider the specific requirements of the project before deciding which process is best.

5.Does the oem polymer injection molds design comply with industry standards and regulations?

As one of the top oem polymer injection molds manufacturers in China, we take this very seriously.Yes, the mold design should comply with industry standards and regulations. It is important to ensure that the mold design meets all applicable safety and quality standards.

Does the oem polymer injection molds design comply with industry standards and regulations?

6.What is the production capacity of the factory for oem polymer injection molds?

The annual manufacturing capacity is around 400-600 sets of various plastic injection moulds for parts of auto parts, home appliances, medical instruments, office appliances and communicating equipments, etc.

7.What types of machines are needed to produce a oem polymer injection molds?

Our company has many years of oem polymer injection molds experience and expertise.The types of machines needed to produce a mould depend on the type of mould being produced. Generally, machines such as CNC milling machines, lathes, grinders, and EDM machines are used to produce moulds. In addition, injection moulding machines may be used to produce plastic moulds.

8.What is the size of the oem polymer injection molds cavity and how does it affect the moulding process?

We should perform well in market competition, and the prices of oem polymer injection molds products have a great competitive advantage.The size of the mould cavity is determined by the size of the part being moulded. The size of the mould cavity affects the moulding process in several ways.
Firstly, it affects the amount of material that can be injected into the mould, which in turn affects the cycle time and the amount of material used.
Secondly, the size of the mould cavity affects the cooling time of the part, which affects the part's dimensional accuracy and surface finish.
Finally, the size of the mould cavity affects the pressure and speed of the injection process, which can affect the part's strength and durability.

9.what is mould?

We have flexible production capacity. Whether you are large orders or small orders, you can produce and release goods in a timely manner to meet customer needs.
Mould is a type of fungus that grows in damp, warm environments. It can appear as a fuzzy or slimy substance on walls, ceilings, and other surfaces. Mould can cause health problems, such as allergies and respiratory issues, and can damage the structure of a building.

10.What type of runner and gate systems are incorporated into the oem polymer injection molds design?

We continue to invest in research and development and continue to launch innovative products.The type of runner and gate systems incorporated into the mold design depend on the type of part being molded and the desired outcome. Common runner and gate systems include cold runner systems, hot runner systems, direct gating, edge gating, and valve gating.

What type of runner and gate systems are incorporated into the oem polymer injection molds design?

11.How does shrinkage of the material being moulded affect the finished product?

We have rich industry experience and professional knowledge, and have strong competitiveness in the market.Shrinkage of the material being moulded can affect the finished product in a variety of ways. If the material shrinks too much, it can cause warping, cracking, or other deformities in the finished product. It can also cause the product to be smaller than expected, or to have a different shape than intended. Additionally, shrinkage can cause the product to have a different surface finish than expected, or to have a different color than intended.



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