Copper-Silicon Intermediate Alloy (CuSi20)
Copper-Silicon Intermediate Alloy (CuSi20)
Copper-Silicon Intermediate Alloy (CuSi20)
Copper-Silicon Intermediate Alloy (CuSi20)

Copper-Silicon Intermediate Alloy (CuSi20)

  • element:Cu, Si
  • purity:18.0-21.0% Si
  • shape:Block
  • specification:1 Kg
  • packaging:Vacuum packaging, Carton box, Wooden box

Copper-silicon intermediate alloy (CuSi20) is an advanced metallurgical material known for its excellent corrosion resistance, thermal stability, and mechanical durability. The addition of silicon enhances wear resistance, oxidation protection, and structural integrity, making it ideal for aerospace components, electrical applications, industrial machinery, and precision manufacturing. Copper-silicon alloy plays a crucial role in advanced metallurgy, sustainable engineering, and high-performance material solutions.

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Product Overview
Copper-silicon intermediate alloy (CuSi20) is an alloy used for adding silicon to copper alloys during smelting. The addition of silicon significantly improves the wear resistance and oxidation resistance of copper alloys, while also enhancing their fluidity and castability. Copper-silicon alloys are widely used to improve the strength, hardness, and other properties of copper-based alloys, making them particularly suitable for industrial applications that require high-temperature resistance, corrosion resistance, and wear resistance.

Key Features

  • The addition of silicon improves the wear resistance and oxidation resistance of copper alloys.
  • Increases the alloy's fluidity and castability, improving processing performance.
  • Suitable for applications in high-temperature and high-strength environments.
  • Acts as an additive to enhance the properties of copper alloys, especially in terms of corrosion and wear resistance.
  • Stable silicon content ensures a good alloying effect.

Applications

  • Copper Alloy Smelting:Used to add silicon to copper alloys during smelting to enhance mechanical properties.
  • Non-Ferrous Metallurgy:Used to improve the smelting process and enhance the castability and mechanical properties of copper alloys.
  • Industrial Manufacturing:Suitable for manufacturing mechanical components that require high-temperature and wear resistance, such as engine parts and bearings.
  • Electronics Industry:Improves the stability of copper alloys at high temperatures, making them ideal for electronic component manufacturing.
  • Building Materials:Used in the production of copper alloy building materials with better corrosion resistance.

 

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Copper-Silicon Intermediate Alloy (CuSi20)Copper-Silicon Intermediate Alloy (CuSi20)

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