Our professional field covers Multi color injection molding,Plastic injection,Mold standard components,Plastic mold,Blow Molding,Die Casting Mold and others. We strive for excellence in all aspects, especially in short delivery cycles, as we continuously increase our high praise for our employees and processes. The company currently has over 200 employees and annual can produce around 400-600 sets of various plastic injection molds, including medical instruments,auto parts,communicating equipments,office appliances .
After years of development, we have collaborated with global clients such as Samsung,Sony,HONDA,Nissan,FAW-Volkswagen,Ford,KONKA,HP,Canon . We have a solid team with rich experience in industrial design, 3D structural design, tooling production, certificate consulting, project management, QA/QC, and production management.
| Product name | plastic blow moulds |
| Place of Origin | Shenzhen,China |
| Runner | Cold Runner. Hot Runner: Yudo |
| Port | Shenzhen |
| Colors | Customized Colors |
| Condition | New |
| Design software | CAD/PROE/UG/3D/STEP/PDF/JPG |
| Packing Size(cm) | 212*130*185 Specific consultation with us |
| Brand Name | GoodBo Mould |
| Export region | America,Africa,Oceania |
| Export country | America,Africa,Oceania...etc |
| Mould life | 500000 shots |
| Certification | ISO90001 |
| Product Material | POM(polyformaldehyde),GPS(general polystyrene),PPO(poly phenylene oxide)...etc. |
| Mould making technology | CNC Programming,3D Modelling...etc. |
| Application | Aerospace,Medical,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 Base | LKM,HASCO... |
GoodBo Mould is one of the leading plastic blow moulds manufacturers in China, and our mission is to provide customers with high-quality products and the highest quality service.
Excellent and adequate processing equipments, and normalized and efficient production management are the guarantee for mould quality and delivery.
GoodBo Mould continuous investment in our mold making facilities has kept the company at the forefront of quality injection mold making. Backed up by our experienced mold maker and management personnel, our philosophy is: DO IT RIGHT THE FIRST TIME, EVERY TIME. Get design approval before cutting steel ,Complete In-House Mold-Making Facilities,24-hours operations to meet your needs,Short lead-time,etc.
plastic blow moulds---FAQs Guide
2.How do plastic blow moulds help to reduce production costs?
3.How can a plastic blow moulds be corrosion-resistant?
4.About plastic blow moulds warranty
5.What kind of cooling systems are used for moulding?
6.About plastic blow moulds,which materials do you support?
7.What is the production capacity of the factory for plastic blow moulds?
8.How to make a mould?
9.What should be taken into consideration when selecting a plastic blow moulds for a certain application?
10.What are the advantages and disadvantages of using a 3D printed plastic blow moulds?
11.Are there any special solutions for making plastic blow moulds with deep walls or complex shapes?
12.How does the plastic blow moulds contribute to achieving a desired surface finish on the molded products?
13.What is the difference between an injection mould and a compression plastic blow moulds?
1.What is the difference between cast and machined plastic blow moulds?
We actively participate in the plastic blow moulds 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.
2.How do plastic blow moulds help to reduce production costs?
plastic blow moulds is not a product only, but also can help you comes to money-making.Moulds can help to reduce production costs by reducing the amount of time and labour required to produce a product. Moulds can be used to create multiple identical parts quickly and efficiently, eliminating the need for manual labour and reducing the amount of time needed to produce a product. Additionally, moulds can be used to create complex shapes and designs that would be difficult or impossible to create by hand, reducing the need for expensive custom tooling.

3.How can a plastic blow moulds be corrosion-resistant?
We have a wide range of plastic blow moulds customer groups and establishes long -term cooperative relationships with partners. The countries we provide services include Paraguay,South Africa,Guam,Guernsey,Singapore,Serbia and Montenegro.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.
4.About plastic blow moulds 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.

5.What kind of cooling systems are used for moulding?
We have advantages in marketing and channel expansion. Suppliers have established good cooperative relations, continuously improved workflows, improved efficiency and productivity, and provided customers with high -quality products and services.The most common cooling systems used for moulding are water cooling systems, air cooling systems, and oil cooling systems. Water cooling systems are the most efficient and cost-effective, as they use a closed-loop system to circulate coolant through the mould to quickly cool the plastic. Air cooling systems use fans to blow air over the mould to cool it, while oil cooling systems use a heat exchanger to transfer heat from the mould to a cooling oil.
6.About plastic blow moulds,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.

7.What is the production capacity of the factory for plastic blow moulds?
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.
8.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!

9.What should be taken into consideration when selecting a plastic blow moulds for a certain application?
Our mission is to provide customers with the best solutions for plastic blow moulds.
1. The type of material to be used in the mould.
2. The size and shape of the part to be produced.
3. The complexity of the part design.
4. The production volume required.
5. The type of injection moulding machine to be used.
6. The type of cooling system to be used.
7. The type of ejection system to be used.
8. The type of surface finish required.
9. The cost of the mould.
10. The lead time for the mould.
10.What are the advantages and disadvantages of using a 3D printed plastic blow moulds?
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.

11.Are there any special solutions for making plastic blow moulds 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.
12.How does the plastic blow moulds 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.

13.What is the difference between an injection mould and a compression plastic blow moulds?
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.
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