We can meet various requirements from different types of customers. We pursue the management tenet of Quality is superior.The area of expertise covers Die Casting Mold,Plastic mold,Plastic injection,Mold standard components,Mock up sample,Blow Molding, etc.GoodBo Mould designs, makes mold and manufactures injection molded products and parts for a wide variety of industries. GoodBo Mould has our global customers such as HONDA,FAW-Volkswagen,Ford,Sony,HP,Haier,Samsung,Hyundai,KONKA,etc.
Shaping Mode | Injection Mould |
Place of Origin | Shenzhen,Guangdong,China |
Mould making technology | Plastic flow/deform simulation,CNC Programming...etc. |
Product Material | Plastic/Metal |
Colors | Customized Colors |
Product Name | parts injection mold |
Mold material | P20/718/738/NAK80/S136 |
Material | ABS(acrylonitrile-butadiene-styrene copolymer),PC(polycarbonate),PP(polypropylene)...etc. |
Design software | CAD/PROE/UG/3D/DWG/IGS/STEP/PDF/JPG |
Cavity | Single/Multi Cavity moulds |
Mould life | 300000 shots |
Application | Automotive,Defence,Marine...etc. |
Runner | Cold Runner. Hot Runner: Yudo |
Surface treatment | Polish. Etched. Texture |
Certification | ISO9001:2015 |
Size(cm) | 197 * 142 * 170 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 | Europe,Africa,Asia |
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 |
GoodBo Mould is one of the leading parts injection mold manufacturers in China, and our mission is to provide customers with high-quality products and the highest quality service.
We believe quality begins with mould design capability and consider it to be the key to successful mould making. So at GoodBo Mould, every mould designers will do the integrated engineering analysis from start to enable the high quality.
Our engineering and mold making technology include:AutoCad(2D Modelling),Moldflow Mold Advisor(Plastic flow/deform simulation),MasterCam(CNC Programming),Pro/Engineer(3D Modelling),etc.
parts injection mold---FAQs Guide
2.How does the parts injection mold contribute to achieving a desired surface finish on the molded products?
3.About parts injection mold,which materials do you support?
4.what is mould?
5.About parts injection mold warranty
6.What parts injection mold maintenance methods can be used to extend the mold’s service life?
7.Does the parts injection mold support multi-cavity configurations for simultaneous production of multiple units?
8.What type of steel is normally used for a parts injection mold?
9.What type of part ejection system does the parts injection mold use, and how does it ensure smooth ejection without defects?
10.What kind of coatings are used for parts injection mold surfaces to reduce wear and tear?
11.What is the difference between cast and machined parts injection mold?
12.What are the advantages and disadvantages of using a 3D printed parts injection mold?
1.What type of runner and gate systems are incorporated into the parts injection mold 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.
2.How does the parts injection mold 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.
3.About parts injection mold,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 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.
5.About parts injection mold warranty
If the quality is poor, we will provide a 100% refund. Firstly, we will investigate the root cause of the problem and then take measures to prevent it from happening again in the future. This includes changes to mold design, process, or materials used.
6.What parts injection mold 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.
7.Does the parts injection mold support multi-cavity configurations for simultaneous production of multiple units?
We have broad development space in domestic and foreign markets. parts injection mold have great advantages in terms of price, quality, and delivery date.Yes, many molds are designed to support multi-cavity configurations for simultaneous production of multiple units.
8.What type of steel is normally used for a parts injection mold?
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.
9.What type of part ejection system does the parts injection mold use, and how does it ensure smooth ejection without defects?
We focus on providing high quality parts injection mold 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.
10.What kind of coatings are used for parts injection mold surfaces to reduce wear and tear?
Our parts injection mold 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.
11.What is the difference between cast and machined parts injection mold?
We actively participate in the parts injection mold industry associations and organization activities. The corporate social responsibility performed well, and the focus of brand building and promotionCast moulds are made by pouring molten metal into a mould cavity, while machined moulds are made by cutting and shaping metal with a machine tool. Cast moulds are typically used for low-volume production, while machined moulds are used for high-volume production. Cast moulds are generally less expensive and faster to produce, while machined moulds are more precise and can produce more complex shapes.
12.What are the advantages and disadvantages of using a 3D printed parts injection mold?
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.
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