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ShenZhen GoodBo Mould Co., Ltd 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 HP,KONKA,Samsung,HONDA,Haier,Media,Nissan,Canon,FAW-Volkswagen,Sony,etc.



Product Name plastic multi-shot molds
Plastic Materials TPE(thermoplastic),HDPE(high density polyethylene),PP(polypropylene) ,...etc.
Standard ISO9001
Place of Origin
China
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 * 194 * 232

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
Europe,Asia,Oceania
Export Country
Dominican Republic,Greenland,Cote d'Ivoire,Wake Island, ...etc.
Surface treatment
Polish. Etched. Texture
Experience
15 years experience in plastic injection mold making and plastic parts produce.
Mould making technology
CNC Programming,Plastic flow/deform simulation...etc.
Hot/ Cold Runner
HUSKY, INCOE, YDDO, HASCO, DME, MoldMaster, Masterflow, Mastip...etc.
Mould Life
500000 Shots. (According to your working environment.)
Equipments
Stamping equipment,EDM ,Drilling machines,CNC,Milling machine,CMM...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 plastic multi-shot 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),Moldflow Mold Advisor(Plastic flow/deform simulation),SolidWorks(3D Modelling),Pro/Engineer(3D Modelling),etc.

plastic multi-shot molds---FAQs Guide
1.About plastic multi-shot molds production equipment
2.How is the surface of a plastic multi-shot molds treated to improve its performance?
3.About plastic multi-shot molds,which materials do you support?
4.What is the size of the plastic multi-shot molds cavity and how does it affect the moulding process?
5.Are there automated features integrated into the plastic multi-shot molds to streamline the manufacturing process?
6.What is the difference between high-pressure and low-pressure plastic multi-shot molds?
7.What plastic multi-shot molds maintenance methods can be used to extend the mold’s service life?
8.What is the significance of angle control in plastic multi-shot molds?
9.Are there any special solutions for making plastic multi-shot molds with deep walls or complex shapes?
10.What factors affect the lifespan of a plastic multi-shot molds?
11.Is the plastic multi-shot molds designed for easy customization to meet specific product requirements?
12.What materials are usually used to make plastic multi-shot molds?
13.What type of runner and gate systems are incorporated into the plastic multi-shot molds design?
14.How does the plastic multi-shot molds contribute to achieving a desired surface finish on the molded products?
15.What other factors need to be taken into account when designing a plastic multi-shot molds?

1.About plastic multi-shot molds production equipment

Our mold processing equipment mainly includes stamping equipment, CNC machining equipment, electrical discharge machining equipment, wire cutting machines, plasma cutting machines, lathes, milling machines, grinders, drilling machines, and casting equipment.

2.How is the surface of a plastic multi-shot molds treated to improve its performance?

We have established a good reputation and reliable partnerships within the plastic multi-shot molds industry.The surface of a mould can be treated in a variety of ways to improve its performance. Common treatments include polishing, sandblasting, shot peening, and coating with a release agent. Polishing the surface of the mould can help reduce friction and improve the mould's ability to release parts. Sandblasting can help remove any imperfections or burrs on the surface of the mould. Shot peening can help increase the surface hardness of the mould and improve its wear resistance. Finally, coating the mould with a release agent can help reduce sticking and improve the mould's ability to release parts.

How is the surface of a plastic multi-shot molds treated to improve its performance?

3.About plastic multi-shot molds,which materials do you support?

We offer clients a wide range of materials:ABS(acrylonitrile-butadiene-styrene copolymer), CA(cellulose acetate), AS(acrylonitrile-styrene), GPS(general polystyrene), HDPE(high density polyethylene), LDPE(low density polyethylene), PA(polyamide), PBTP(poly butylene terephthalate), PC(polycarbonate), PE(polyethylene), PETP(poly ethylene terephthalate), PMMA(poly methyl methacrylate), POM(polyformaldehyde), PP(polypropylene),PPO(poly phenylene oxide), PPS(poly phenylene sulfide), PUR(polyurethane), PVC(poly vinyl chloride), TPE(thermoplastic), etc.

4.What is the size of the plastic multi-shot molds cavity and how does it affect the moulding process?

We should perform well in market competition, and the prices of plastic multi-shot 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.

What is the size of the plastic multi-shot molds cavity and how does it affect the moulding process?

5.Are there automated features integrated into the plastic multi-shot molds to streamline the manufacturing process?

We adhere to the principle of quality first and have a complete production quality management system and quality inspection process.Yes, many molds are designed with automated features to streamline the manufacturing process. These features can include automated injection systems, automated ejection systems, automated temperature control systems, and automated molding cycles.

6.What is the difference between high-pressure and low-pressure plastic multi-shot 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.

What is the difference between high-pressure and low-pressure plastic multi-shot molds?

7.What plastic multi-shot molds maintenance methods can be used to extend the mold’s service life?

We maintain a certain amount of R&D investment every year and continuously improve operational efficiency to provide better services to our cooperative customers.
1. Clean the mold regularly: Cleaning the mold regularly helps to remove any dirt, dust, or debris that can cause wear and tear on the mold.
2. Lubricate the mold: Lubricating the mold helps to reduce friction and wear on the mold.
3. Inspect the mold: Regularly inspecting the mold for any signs of wear or damage can help to identify any potential problems before they become serious.
4. Repair any damage: If any damage is found, it should be repaired as soon as possible to prevent further damage and extend the life of the mold.
5. Store the mold properly: Storing the mold in a dry, cool place can help to prevent rust and corrosion.

8.What is the significance of angle control in plastic multi-shot molds?

We have advanced production equipment and technology to meet the needs of customers, and can provide customers with high quality, low priced plastic multi-shot molds products.Angle control in moulds is important for ensuring that the finished product has the desired shape and dimensions. It is also important for controlling the flow of molten material during the injection moulding process. Angle control helps to ensure that the molten material is evenly distributed throughout the mould cavity, which helps to reduce the risk of defects in the finished product. Additionally, angle control helps to reduce the risk of warping and other deformities in the finished product.

What is the significance of angle control in plastic multi-shot molds?

9.Are there any special solutions for making plastic multi-shot 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.

10.What factors affect the lifespan of a plastic multi-shot molds?

We are centered on customers and always pay attention to customers' needs for plastic multi-shot molds products.
1. Temperature: Temperature can affect the growth and survival of moulds. Generally, moulds grow best in warm, damp environments. High temperatures can kill some moulds, while low temperatures can slow down their growth.
2. Humidity: High humidity levels can promote the growth of moulds, while low humidity levels can inhibit their growth.
3. Light: Moulds need light to grow, so exposure to light can affect their lifespan.
4. Airflow: Poor air circulation can create an environment that is conducive to mould growth.
5. Nutrients: Moulds need nutrients to survive, so the availability of nutrients can affect their lifespan.
6. pH: The pH of the environment can affect the growth of moulds. Generally, moulds prefer slightly acidic environments.

What factors affect the lifespan of a plastic multi-shot molds?

11.Is the plastic multi-shot 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 materials are usually used to make plastic multi-shot 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.

What materials are usually used to make plastic multi-shot molds?

13.What type of runner and gate systems are incorporated into the plastic multi-shot 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.

14.How does the plastic multi-shot 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.

How does the plastic multi-shot molds contribute to achieving a desired surface finish on the molded products?

15.What other factors need to be taken into account when designing a plastic multi-shot 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.



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