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Powder Metallurgy Parts

Powder Metallurgy Parts For High Precision Operating Knife Handle

Place of Origin: Zhejiang, China (Mainland) Brand Name: OEM Powder Metallurgy Parts Model Number: 088 Powder Metallurgy Parts Application: Medical Knife Handle Material: PIM-17-4PH Chemical Composition: Powder Metallurgy Parts Sofine Gian PIM Tech specialized in the PIM technology of research and development, production and service,which include Powder Metallurgy Parts, PIM, MIM, CIM and so on.We can make the products according to customers’ drawings or requirement (OEM). And the lead time is one or two weeks. We promise that our products are high precision,100% quality with competitive price.Welcome to email us! Powder Metallurgy is a continually and rapidly evolving technology embracing most metallic and alloy materials, and a wide variety of shapes. PM is a highly developed method of manufacturing reliable ferrous and non ferrous parts. The high precision forming capability of PM generates components with near net shape, intricate features and good dimensional precision pieces are often finished without the need of machining. By producing parts with a homogeneous structure the PM process enables manufacturers to make products that are more consistent and predictable in their behaviour across a wide range of applications. In addition the PM Process has a high degree of flexibility allowing the tailoring of the physical characteristics of a product to suit your specific property and performance requirements. These include:

  • Structural pieces with complex shapes
  • Controlled Porosity
  • Controlled performance
  • Good performance in stress and absorbing of vibrations
  • Special properties such as hardness and wear resistance
  • Great precision and good surface finish
  • Large series of pieces with narrow tolerances

The unique flexibility of the PM process enables products to be made from materials that are tailored to your specific needs. By using specially selected materials this capability enables refinements to be engineered into the mechanical properties of the part.




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