Copper-Rare Earth Intermediate Alloy (CuRe18)
Copper-Rare Earth Intermediate Alloy (CuRe18)
Copper-Rare Earth Intermediate Alloy (CuRe18)
Copper-Rare Earth Intermediate Alloy (CuRe18)

Copper-Rare Earth Intermediate Alloy (CuRe18)

  • element:Cu, Re
  • purity:17-19% Re
  • shape:Block
  • specification:1 Kg
  • packaging:Vacuum packaging, Carton box, Wooden box

Copper-rare earth intermediate alloy (CuRe18) is an advanced metallurgical material designed to enhance mechanical strength, corrosion resistance, and thermal stability. The integration of rare earth elements improves grain refinement, oxidation protection, and wear resistance, making it essential for aerospace components, electrical applications, industrial coatings, and precision manufacturing. Copper-rare earth alloy plays a crucial role in sustainable engineering, high-performance metallurgy, and specialized material solutions.

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Product Overview
Copper-rare earth intermediate alloy (CuRe18) is an alloy used to add rare earth elements to copper alloys during smelting. The addition of rare earth elements significantly enhances the properties of copper alloys, improving their high-temperature resistance, corrosion resistance, and oxidation resistance. This alloy is widely used to improve the strength, hardness, and ductility of copper alloys, making it suitable for high-demand engineering applications.

Key Features

  • The addition of rare earth elements enhances the high-temperature and corrosion resistance of copper alloys.
  • Improves the strength, hardness, and oxidation resistance of copper alloys.
  • Increases the alloy’s fluidity, making it suitable for precision casting.
  • Helps address the issues of copper’s susceptibility to burn-off, high melting point, and difficulty in melting.
  • Enhances the longevity and reliability of copper alloys.

Applications

  • Copper Alloy Smelting:Used for adding rare earth elements during the copper alloy smelting process to improve alloy performance.
  • Non-Ferrous Metallurgy:Improves the oxidation resistance and corrosion resistance of copper alloys during smelting.
  • Electronics Industry:Enhances the high-temperature performance of copper alloys, making them suitable for manufacturing electronic components.
  • Mechanical Manufacturing:Suitable for manufacturing mechanical components that require high strength and wear resistance.
  • Aerospace:Used in high-temperature and high-pressure environments to enhance the stability and durability of copper alloys.

 

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