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ShenZhen GOODBO MOULD LIMITED has a strict quality control system and an efficient work team. We specialize in the production of molds, covering a wide range, including Die Casting Mold,Blow Molding,Mock up sample,Plastic injection,Plastic mold,Multi color injection molding and others.

GoodBo Mould offers you the benefits of lower costs coupled with the high engineering and production standards expected in the European, North American and Japan injection moulding industry as well as some big domestic enterprises.We have confidence in our quality, service, and pricing, and we maintain long-term business relationships with customers from countries such as the United States,Europa Island,Vanuatu,Greenland,Algeria,Virgin Islands. We have received high praise and recognition from our customers.



Product name overmolding injection molds
Place of Origin Shenzhen,Guangdong
Runner
Cold Runner. Hot Runner: Yudo
PortShenzhen
Colors Customized Colors
Condition
New
Design software
CAD/PROE/UG/3D/STEP/PDF/JPG
Packing Size(cm)

157*160*219

Specific consultation with us

Brand Name GoodBo Mould
Export region
Asia,Europe
Export country
Asia,Europe...etc
Mould life
450000 shots
Certification
ISO90001
Product Material
PE(polyethylene),TPE(thermoplastic),CA(cellulose acetate)...etc.
Mould making technology
3D Modelling,2D Modelling...etc.
Application
FMCG,Defence,White Goods...etc.
After-sales Service
Always maintained
MOQ
Negotiable
Packaging Details
Packed in cartons
Supply Ability

2000-100000 Set/Sets per Month

(See specific model products)

Lead time (days)
20-40 (To be negotiated)
Mould BaseLKM,HASCO...
 Please noteThis table is for reference only, please consult us for specific information.

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

GoodBo Mould appoints a project manager to each individual project and client. The project manager is in charge of the entire project from start to finish providing direct communication for the client. All project management teams communicate in English.

To efficiently manage projects and achieve the required lead time, project manager is appointed to monitor the process of manufacture. Process charts are issued every 7 days via e-mail include digital photographs of the work in progress, creating a real-time tooling progress assessment.

overmolding injection molds---FAQs Guide
1.What safety precautions should be taken when using overmolding injection molds?
2.How can a overmolding injection molds be corrosion-resistant?
3.About the scale of overmolding injection molds factory
4.what is mould?
5.How do overmolding injection molds hardness and mould flexibility affect its performance?
6.What materials are usually used to make overmolding injection molds?
7.What types of finishes can be applied to overmolding injection molds?
8.Does the overmolding injection molds design comply with industry standards and regulations?
9.What technologies are used to produce higher quality overmolding injection molds?
10.What is the difference between high-pressure and low-pressure overmolding injection molds?
11.How to make a mould?
12.What is the production capacity of the factory for overmolding injection molds?
13.What type of steel is normally used for a overmolding injection molds?
14.What are the after-sales services available for overmolding injection molds?
15.How does the overmolding injection molds contribute to cost-effectiveness in terms of production efficiency and material utilization?

1.What safety precautions should be taken when using overmolding injection molds?

We pay attention to the transformation of intellectual property protection and innovation achievements. Your OEM or ODM order design we have a complete confidentiality system.
1. Wear protective gloves, goggles, and a face mask when handling moulds.
2. Avoid breathing in mould spores by working in a well-ventilated area.
3. Clean and disinfect moulds before and after use.
4. Avoid contact with skin and eyes.
5. Dispose of moulds properly after use.
6. Store moulds in a dry, cool place away from direct sunlight.
7. Wear long sleeves and pants when working with moulds.
8. Avoid eating or drinking while working with moulds.
9. Wash hands thoroughly after handling moulds.
10. Use a dust mask when sanding or grinding moulds.

2.How can a overmolding injection molds be corrosion-resistant?

We have a wide range of overmolding injection molds customer groups and establishes long -term cooperative relationships with partners. The countries we provide services include Europa Island,Vanuatu,Greenland,Algeria,Virgin Islands.Moulds can be made corrosion-resistant by using materials such as stainless steel, aluminum, and other alloys that are resistant to corrosion. Additionally, the moulds can be coated with a corrosion-resistant material such as a paint or a powder coating.

3.About the scale of overmolding injection molds factory

Our company currently has over 200 employees and produces around 400-600 sets of various plastic injection molds annually.

4.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.

what is mould?

5.How do overmolding injection molds hardness and mould flexibility affect its performance?

We pay attention to user experience and product quality, and provide the best product quality and lowest production cost for cooperative customers.Mould hardness and mould flexibility can have a significant impact on the performance of a mould. Harder moulds are more durable and can withstand higher temperatures and pressures, making them ideal for high-volume production. However, they are also more difficult to modify and can be more expensive to produce. On the other hand, softer moulds are more flexible and can be modified more easily, making them ideal for low-volume production. However, they are also more prone to wear and tear and can be less durable.

6.What materials are usually used to make overmolding injection molds?

We have established long-term and stable partnerships with our suppliers, so we have great advantages in price and cost and quality assurance.Moulds are typically made from metal, plastic, rubber, silicone, or plaster.

7.What types of finishes can be applied to overmolding injection molds?

We attach importance to the innovation ability and team spirit of employees, have advanced R & D facilities and laboratories, and have a good quality management system.
1. Powder Coating
2. Anodizing
3. Painting
4. Plating
5. Polishing
6. Sandblasting
7. Heat Treating
8. Ceramic Coating
9. Laser Etching
10. Vacuum Metallizing

8.Does the overmolding injection molds design comply with industry standards and regulations?

As one of the top overmolding 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 overmolding injection molds design comply with industry standards and regulations?

9.What technologies are used to produce higher quality overmolding injection molds?

We pay attention to employee development and benefits, and provide a good working environment in order to improve the efficiency of employees and improve the quality management of overmolding injection molds products.
1. Computer Numerical Control (CNC) Machining: CNC machining is a process that uses computer-controlled machines to cut and shape materials into precise shapes and sizes. This technology is used to produce higher quality moulds with greater accuracy and repeatability.
2. 3D Printing: 3D printing is a process that uses a digital model to create a physical object. This technology is used to produce complex moulds with intricate details and shapes.
3. Laser Cutting: Laser cutting is a process that uses a laser beam to cut and shape materials into precise shapes and sizes. This technology is used to produce higher quality moulds with greater accuracy and repeatability.
4. Vacuum Forming: Vacuum forming is a process that uses a vacuum to form plastic sheets into desired shapes. This technology is used to produce higher quality moulds with greater accuracy and repeatability.
5. Injection Moulding: Injection moulding is a process that uses a heated plastic material to form a desired shape. This technology is used to produce higher quality moulds with greater accuracy and repeatability.

10.What is the difference between high-pressure and low-pressure overmolding injection molds?

We focus on teamwork and communication to achieve common goals, We attach great importance to this detail.High-pressure moulds are used to create parts with complex shapes and intricate details, while low-pressure moulds are used to create parts with simpler shapes and fewer details. High-pressure moulds require more pressure to form the parts, while low-pressure moulds require less pressure. High-pressure moulds are more expensive and require more time to create the parts, while low-pressure moulds are less expensive and require less time.

11.How to make a mould?

We focus on innovation and continuous improvement to maintain a competitive advantage.
1. Start by gathering the materials you need to make the mould. You will need a container to hold the mould, a material to make the mould from (such as silicone, plaster, or clay), and a release agent (such as petroleum jelly or cooking spray).
2. Prepare the container for the mould. Make sure it is clean and dry, and then apply a release agent to the inside of the container. This will help the mould come out of the container easily when it is finished.
3. Mix the material you are using to make the mould. Follow the instructions on the package for the best results.
4. Pour the mixture into the container and spread it evenly. Make sure to fill the container completely and leave no air pockets.
5. Allow the mould to dry completely. Depending on the material you are using, this could take anywhere from a few hours to a few days.
6. Once the mould is dry, carefully remove it from the container. If necessary, use a knife or other tool to help loosen the edges of the mould.
7. Your mould is now ready to use!

12.What is the production capacity of the factory for overmolding 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.

What is the production capacity of the factory for overmolding injection molds?

13.What type of steel is normally used for a overmolding injection molds?

We focus on our customers' needs and strive to meet their expectations, so we take this very seriously.
Tool steel is typically used for moulds. Common types of tool steel include high-speed steel, hot-work steel, cold-work steel, shock-resistant steel, and plastic mould steel.

14.What are the after-sales services available for overmolding injection molds?

GoodBo Mould uses a integrated approach to establish the best process for the manufacturing of your product. Once the production is in place we use web-based communication, design and file transfer tools that streamline every step processing and fulfilling the project.All project management teams communicate in English.

15.How does the overmolding injection molds contribute to cost-effectiveness in terms of production efficiency and material utilization?

Being one of the top overmolding injection molds manufacturers in China, We attach great importance to this detail.Molds are used to create parts and components with a high degree of accuracy and repeatability. This helps to reduce waste and increase production efficiency. The use of molds also allows for the efficient use of materials, as the same mold can be used to create multiple parts with the same shape and size. This reduces the amount of material needed to produce a given number of parts, resulting in cost savings. Additionally, molds can be designed to reduce the amount of time needed to produce a part, further increasing production efficiency and cost-effectiveness.



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