The company currently has over 200 employees and produces around 400-600 sets of various plastic injection molds, including home appliances,auto parts,office appliances,communicating equipments, annually. The cohesion of the team reflects excellent quality and service. We firmly believe in adhering to the basic principles of quality, service, and innovation. We believe that "high quality comes from every detail", which is why we win customer loyalty. We welcome you to explore various possibilities.
Shaping Mode | Injection Mould |
Place of Origin | Shenzhen,Guangdong,China |
Mould making technology | CNC Programming,3D Modelling...etc. |
Product Material | Plastic/Metal |
Colors | Customized Colors |
Product Name | medical device plastic injection molds |
Mold material | P20/718/738/NAK80/S136 |
Material | AS(acrylonitrile-styrene),PPS(poly phenylene sulfide),CA(cellulose acetate)...etc. |
Design software | CAD/PROE/UG/3D/DWG/IGS/STEP/PDF/JPG |
Cavity | Single/Multi Cavity moulds |
Mould life | 500000 shots |
Application | Aerospace,Defence,Medical...etc. |
Runner | Cold Runner. Hot Runner: Yudo |
Surface treatment | Polish. Etched. Texture |
Certification | ISO9001:2015 |
Size(cm) | 197 * 173 * 272 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 | America,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 medical device plastic 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 week via e-mail include digital photographs of the work in progress, creating a real-time tooling progress assessment.
medical device plastic injection molds---FAQs Guide
2.What is the difference between an injection mould and a compression medical device plastic injection molds?
3.What techniques are used to remove excess material from a medical device plastic injection molds during the moulding process?
4.How does the temperature of a medical device plastic injection molds affect the moulding process?
5.What are the common types of medical device plastic injection molds used for metal alloys?
6.About medical device plastic injection molds warranty
7.What is the production capacity of the factory for medical device plastic injection molds?
8.About medical device plastic injection molds quality system
9.In what ways can medical device plastic injection molds cooling be improved?
10.What type of part ejection system does the medical device plastic injection molds use, and how does it ensure smooth ejection without defects?
1.Are there automated features integrated into the medical device plastic injection 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.
2.What is the difference between an injection mould and a compression medical device plastic 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.
3.What techniques are used to remove excess material from a medical device plastic injection molds during the moulding process?
We maintain a stable growth through reasonable capital operations, focus on industry development trends and cutting -edge technologies, and focus on product quality and safety performance.
1. Trimming: This is the most common technique used to remove excess material from a mould. It involves using a sharp tool to cut away the excess material.
2. Sanding: This technique involves using sandpaper to sand down the excess material.
3. Grinding: This technique involves using a grinding wheel to grind away the excess material.
4. Drilling: This technique involves using a drill to drill away the excess material.
5. Blasting: This technique involves using a blasting material such as sand or glass beads to blast away the excess material.
4.How does the temperature of a medical device plastic injection molds affect the moulding process?
We have a professional team that is committed to the innovation and development of medical device plastic injection molds.Temperature is a critical factor in the moulding process. If the mould is too cold, the plastic material will not flow properly and the moulded part will be of poor quality. If the mould is too hot, the plastic material will degrade and the moulded part will be of poor quality. The ideal temperature for the mould depends on the type of plastic material being used. Generally, the mould should be heated to a temperature that is slightly higher than the melting point of the plastic material. This will ensure that the plastic material flows properly and the moulded part has a good finish.
5.What are the common types of medical device plastic injection molds used for metal alloys?
We continuously upgrade our skills and knowledge to adapt to changing medical device plastic injection molds market needs.
1. Sand Casting Moulds: Sand casting is one of the most popular and cost-effective methods for producing metal parts and components. Sand casting moulds are made from a mixture of sand, clay, and water. The sand is packed around a pattern of the desired shape, and then the pattern is removed and molten metal is poured into the cavity.
2. Investment Casting Moulds: Investment casting is a process in which a wax pattern is used to create a mould. The wax pattern is then encased in a ceramic shell, which is heated to melt the wax and create a cavity for the molten metal to be poured into.
3. Permanent Moulds: Permanent moulds are made from metal and are used to produce parts with complex shapes and intricate details. The mould is heated and the molten metal is poured into the cavity.
4. Die Casting Moulds: Die casting is a process in which molten metal is forced into a mould under high pressure. The mould is usually made from steel or aluminium and is designed to produce parts with precise dimensions and intricate details.
6.About medical device plastic injection molds 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.
7.What is the production capacity of the factory for medical device plastic 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.
8.About medical device plastic injection molds quality system
We define quality as total customer satisfaction and actively deploy the push of the work for components and management standardization.Excellent and adequate processing equipments, and normalized and efficient production management are the guarantee for mould quality and delivery.
9.In what ways can medical device plastic 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.
10.What type of part ejection system does the medical device plastic injection molds use, and how does it ensure smooth ejection without defects?
We focus on providing high quality medical device plastic 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.
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