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High Precision Liquid Silicone Rubber Injection Molding for LSR Silicone Oxygen Mask

  • Origin: China
  • Supply Type: oem service
  • Processing Time: 45-60 days
  • Min Order: 1

Supplier Info.

  • Company Name Xiamen Better Silicone Rubber Co,Ltd
  • Membership:Free
  • Business Type: Manufacturer, Trading Company, Buying Office, Agent, Distributor/Wholesaler, Government ministry/Bureau/Commission, Association, Business Service (Transportation, finance, travel, Ads, etc), Other
  • Employees Total
  • Annual Revenue

 Liquid Silicone Rubber Injection Molding for LSR Silicone Oxygen Mask

Liquid Silicone Rubber Injection Molding, also called as Liquid Silicone Rubber Injection Molding, LSR Injection Molding, Silicone Injection Molding, is a high presion mold that produce different kinds of high quality and safety parts in different areas. Such as: medical, automatic, electronic, babycare, outdoor activities, kitchen areas.

 Liquid Injection Mold (LIM) is widely used for babycare products, such as: LSR Silicone Baby Nipples, LSR Silicone Baby Breast Pump, Liquid Silicone Baby Bottle, Liquid Silicone Baby Feeder, LSR Silicone Baby Toothbrush, Silicone Baby Finger Toothbrush, Teething Toothbrush.

Liquid Silicone Rubber Injection Molding is a good choice for medical device: LSR Silicone Mask, Liquid Silicone Rubber Full Face Mask, LSR Seal, LSR Gasket, LSR Silicone Forehead Pad, LSR Silicone Cushion, Silicone Breathing Mask, Medical Oxygen Mask, Oxygen Face Mask, LSR Silicone Cannula, Medical Grade Silicone Nose.

Thermosetting liquid silicone rubber (LSR) injection mold structure, in general, is similar with the thermoplastic structure mold, but there are many significant differences. For example, LSR compounds generally have lower viscosities and therefore have very short filling times, even at very low injection pressures. In order to avoid air entrapment, it is important to provide good venting device in the mold.In addition, LSR compounds in the mold will not shrink as thermoplastic compounds, they tend to encounter thermal expansion, cold slightly contraction. As a result, the article does not always remain on the convex surface of the mold as expected, but remains in the cavity of the larger surface area.

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