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ShenZhen GOODBO MOULD LIMITED , located in the beautiful city of Shenzhen, has been engaged in the manufacturing industry since 1988. Our company has over ten years of production experience and has exported our products to many countries around the world. The professional field covers Mold standard components,Blow Molding,Plastic injection,Plastic mold,Die Casting Mold,Multi color injection molding , etc.

So we have rich experience to serve our customers. We define quality as the overall customer satisfaction and actively promote standardization of components and management. With our innovative, dedicated, and experienced team, we can provide your mold manufacturer with the tools, products, and solutions they need. GoodBo mould designs, manufactures molds, and injectable products and parts for various industries. GoodBo Mould has global customers such as FAW-Volkswagen,Ford,HP,Haier,Media,HONDA,Canon,Sony,Nissan.



Shaping Mode Injection Mould
Place of Origin Shenzhen,China
Mould making technology Plastic flow/deform simulation,2D Modelling...etc.
Product Material Plastic/Metal
Colors
Customized Colors
Product Name polystyrene injection molds
Mold material
P20/718/738/NAK80/S136
Material
PPS(poly phenylene sulfide),TPE(thermoplastic),GPS(general polystyrene)...etc.
Design software
CAD/PROE/UG/3D/DWG/IGS/STEP/PDF/JPG
Cavity
Single/Multi Cavity moulds
Mould life
300000 shots
Application
Medical,Defence,Automotive...etc.
Runner
Cold Runner. Hot Runner: Yudo
Surface treatment
Polish. Etched. Texture
Certification
ISO9001:2015
Size(cm)

193 * 177 * 173

Please consult us for specific details

Packaging Details

1. injection mold: by pallet or as buyer's request.

2. injection parts: by bags then export carton, or as buyer's request.

Export region
Oceania,Asia,America
Port
Shenzhen
Supply Ability

3000 Piece/Pieces per Day

Please contact the us to check the exact delivery time

Samples

Maximum order quantity: 1000 piece

Please contact us to confirmation

 Please note: The above table data is for reference only. For specific information, please contact us.

GoodBo Mould is one of the leading polystyrene 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 have invested in both people and technology to ensure that our designs meet your highest expectations. Our experienced mold designers utilize the latest software to directly take the clients CAD model into design. All mold designs are then validated to our clients tooling standards and molding specifications.

Our engineering and mold making technology include:MasterCam(CNC Programming),Pro/Engineer(3D Modelling),AutoCad(2D Modelling),SolidWorks(3D Modelling),etc.

polystyrene injection molds---FAQs Guide
1.What is the difference between an injection mould and a compression polystyrene injection molds?
2.What are the advantages and disadvantages of using a 3D printed polystyrene injection molds?
3.What kind of coatings are used for polystyrene injection molds surfaces to reduce wear and tear?
4.What type of part ejection system does the polystyrene injection molds use, and how does it ensure smooth ejection without defects?
5.How does the polystyrene injection molds contribute to achieving a desired surface finish on the molded products?
6.What types of finishes can be applied to polystyrene injection molds?
7.What is the difference between high-pressure and low-pressure polystyrene injection molds?
8.In what ways can polystyrene injection molds cooling be improved?
9.What are the advantages and disadvantages of polystyrene injection molds made from aluminium?
10.How to make a mould?
11.Is the polystyrene injection molds designed for easy customization to meet specific product requirements?
12.What other factors need to be taken into account when designing a polystyrene injection molds?

1.What is the difference between an injection mould and a compression polystyrene injection molds?

We have been working hard to improve service quality and meet customer needs.An injection mould is a tool used to produce plastic parts by injecting molten material into a mould cavity. The molten material is injected under pressure and cooled to form the desired shape. A compression mould is a tool used to produce plastic parts by pressing a preheated plastic material into a mould cavity. The material is then cooled and hardened to form the desired shape. The main difference between an injection mould and a compression mould is the way in which the molten material is introduced into the mould cavity.

2.What are the advantages and disadvantages of using a 3D printed polystyrene 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.

What are the advantages and disadvantages of using a 3D printed polystyrene injection molds?

3.What kind of coatings are used for polystyrene injection molds surfaces to reduce wear and tear?

Our polystyrene 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.

4.What type of part ejection system does the polystyrene injection molds use, and how does it ensure smooth ejection without defects?

We focus on providing high quality polystyrene injection molds products and services.The type of part ejection system used in a mold depends on the type of mold and the complexity of the part being molded. Generally, the most common type of part ejection system is a mechanical ejector system, which uses pins, blades, or other mechanical components to push the part out of the mold. This system ensures smooth ejection without defects by providing a consistent force to the part, which prevents it from sticking to the mold or becoming damaged during the ejection process. Additionally, the ejector system can be adjusted to provide the optimal amount of force for the part being molded.

What type of part ejection system does the polystyrene injection molds use, and how does it ensure smooth ejection without defects?

5.How does the polystyrene injection molds contribute to achieving a desired surface finish on the molded products?

We adhere to the principle of integrity and transparency, and establish long -term relationships with partners, and we attach great importance to this detail.The mold contributes to achieving a desired surface finish on the molded products by providing a smooth, uniform surface that can be polished or textured to the desired finish. The mold also helps to ensure that the product is free of any defects or imperfections that could affect the surface finish. Additionally, the mold can be designed to create specific textures or patterns on the surface of the product.

6.What types of finishes can be applied to polystyrene 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

What types of finishes can be applied to polystyrene injection molds?

7.What is the difference between high-pressure and low-pressure polystyrene 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.

8.In what ways can polystyrene injection molds cooling be improved?

We enjoy high authority and influence in the industry and continue to innovate products and service models.
1. Increase air circulation: Increasing air circulation in the area where the mold is cooling can help to reduce the temperature of the mold more quickly.
2. Use a cooling system: Installing a cooling system such as a water-cooled chiller can help to reduce the temperature of the mold more quickly and efficiently.
3. Use a fan: Installing a fan in the area where the mold is cooling can help to circulate the air and reduce the temperature of the mold more quickly.
4. Use a heat exchanger: Installing a heat exchanger in the area where the mold is cooling can help to transfer the heat away from the mold more quickly.
5. Use a cooling spray: Applying a cooling spray to the mold can help to reduce the temperature of the mold more quickly.
6. Use a cooling blanket: Wrapping a cooling blanket around the mold can help to reduce the temperature of the mold more quickly.

In what ways can polystyrene injection molds cooling be improved?

9.What are the advantages and disadvantages of polystyrene injection molds made from aluminium?

We are a new polystyrene injection molds manufacturer.
Advantages:
1. Aluminium is lightweight and strong, making it ideal for creating intricate moulds.
2. Aluminium is a good conductor of heat, which makes it ideal for use in casting processes.
3. Aluminium is corrosion-resistant, making it a great choice for moulds that will be used in wet or humid environments.
4. Aluminium is relatively inexpensive compared to other metals, making it a cost-effective choice for moulds.
Disadvantages:
1. Aluminium is not as strong as other metals, making it more prone to wear and tear.
2. Aluminium is not as durable as other metals, making it more susceptible to damage from heat and pressure.
3. Aluminium is not as easy to work with as other metals, making it more difficult to create intricate moulds.
4. Aluminium is not as resistant to corrosion as other metals, making it more prone to rusting.

10.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!

How to make a mould?

11.Is the polystyrene injection molds designed for easy customization to meet specific product requirements?

We have the leading technology and innovation capabilities, and attach importance to employee training and development, and provide promotion opportunities.Yes, many molds are designed to be easily customized to meet specific product requirements. Depending on the complexity of the product, the mold may need to be modified or completely redesigned to meet the desired specifications.

12.What other factors need to be taken into account when designing a polystyrene injection molds?

We have a first -class management team, and we pay attention to teamwork to achieve common goals.
1. The type of material to be used for the mould: Different materials have different properties and require different mould designs.
2. The size and shape of the part to be produced: The mould must be designed to accommodate the size and shape of the part.
3. The number of cavities: The number of cavities in the mould will affect the design.
4. The type of injection moulding machine to be used: The mould must be designed to fit the injection moulding machine.
5. The type of cooling system to be used: The mould must be designed to accommodate the cooling system.
6. The type of ejection system to be used: The mould must be designed to accommodate the ejection system.
7. The type of surface finish to be achieved: The mould must be designed to achieve the desired surface finish.
8. The type of gate to be used: The mould must be designed to accommodate the gate.
9. The type of runner system to be used: The mould must be designed to accommodate the runner system.
10. The type of venting system to be used: The mould must be designed to accommodate the venting system.

What other factors need to be taken into account when designing a polystyrene injection molds?


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