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Medical Equipment Mould
Medical Equipment Mould
Medical Equipment Mould
Medical Equipment Mould
Medical Equipment Mould

Medical Device Plastic Injection Molding

Medical device molding is a process using medical-grade plastic materials to manufacture different durable medical parts and components. The medical device plastic injection molding process can provide benefits for a variety of applications such as medical enclosures, needles, surgical instruments, prosthetics, and so on. 


GM-TECH is an industry leading manufacture of medical device injection molding products. Our medical device molding parts and components with relatively low plastic injection molding cost are safe and reliable, which deserves your trust.


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Features of Medical Device Plastic Injection Molding

Due to the high-quality materials, the medical device injection molding process can be performed smoothly and safely, which ensures the medical parts are durable and reliable. These medical-grade plastics have become the ideal material for different kinds of electronic medical equipment. Several features that our medical device plastic injection molding service can provide, include:


  • Reduced weight

  • Increased functionality

  • Lower cost

  • The decreased burden of sterilization


The Specification of Medical Device Plastic Injection Molding

Part material

ABS

Cavity

1 + 1

Mould accuracy

+ / - 0.02mm

Mould steel

H13

Mouldbase steel

1.1730

Mould life

100W

Mould standard

DME

Mould structure

1 slides

Exporting country

USA

Leadtime

5 weeks

Mould quality customer satisfaction

98%

FAI pass rate

96%

Project cooperation service customer satisfaction

98%


How does Medical Device Plastic Injection Molding Work?


When it comes to the working principle of medical device molding, it is inevitable to mention the medical process machine. The medical device precision injection molding machine consists of three parts, namely the feed hopper, the screw, and the heated barrel. 


When the feed hopper receives the plastic granules, it uses the frictional action of the screw to create heat. Once the plastic reaches the correct temperature, it is then injected into the medical device plastic injection mold cavity. Finally, it gradually keeps cooling and takes the shape of the designed medical device molding part.


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