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Nickel boron alloy (Ni-B)

Nickel boron alloy (Ni-B)

  • Classification:Special Alloy series
  • Views:second
  • Date of issue:2026-02-03 15:52:32
  • Summary
  • Characteristic
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Product Name: Nickel Boron Alloy (Ni-B) 
Specification: 5-50mm-10-50mm 
Appearance: Irregular 
Color: Metallic luster 
Property: It combines the corrosion resistance of nickel with the high hardness of boron, making it an important functional material 
Usage: Used for industrial manufacturing in high-temperature, wear-resistant, and corrosion-resistant environments. Its core applications include serving as an alloy additive, wear-resistant overlay material, and key component manufacturing.

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Nickel boron alloy 
Chemical formula: Ni-B 
Melting point: 1200-1300 ℃ 
Density: 7.36 g/cm ³ 
Appearance: Metallic glossy block 
Preparation method: 
Vacuum induction melting method: High purity nickel powder and boron powder are pressed into electrodes, and then placed in a crucible with electrolytic nickel sheets in a specific order. The crucible is melted in an environment with a vacuum degree better than 1Pa, and finally filled with argon gas to protect the casting. 
nature: 
High hardness and wear resistance: As plated hardness: 650-800 HV, hardness after heat treatment: can exceed 1300 HV 
Excellent corrosion resistance: Strong resistance to alkali corrosion and also has a certain degree of corrosion resistance to acids; Amorphous structure can effectively block corrosive media. 
Catalytic and electrical properties: possessing excellent electrical properties and adjustable resistivity; The nanometer powder with high specific surface area has high catalytic activity. 
Good thermal stability: high melting point (above 1400 ° C), the film is structurally stable at higher temperatures. 
Purpose: 
Alloy element addition: used for nickel based high-temperature alloys, special steels, and casting processes to enhance material strength and heat resistance. 
Wear resistant welding: Made into nickel boron alloy powder (such as NiB20), used for surface strengthening of mechanical components and prolonging equipment life. 
High temperature industrial components: They are resistant to high temperatures and corrosion in aerospace (engine blades, combustion chambers), chemical (reactors, pipelines), and petroleum drilling and production equipment. 
Electronics and New Energy: Manufacturing conductive components, semiconductor devices, and new energy equipment components, utilizing their high purity and electrochemical stability. 
Ship and Ocean Engineering: Marine platform components designed to resist salt spray corrosion.

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