Molybdenum Boride (Mo₂B)
Molybdenum Boride (Mo₂B)
Molybdenum Boride (Mo₂B)
Molybdenum Boride (Mo₂B)

Molybdenum Boride (Mo₂B)

  • element:Molybdenum (Mo), Boron (B)
  • purity:High Purity
  • shape:Powder
  • specification:Available in different particle sizes based on demand
  • packaging:Sealed packaging, suitable for transportation and storage

Molybdenum boride (Mo₂B) is a high-performance ceramic compound recognized for its exceptional hardness, thermal stability, and wear resistance. It is widely used in aerospace applications, cutting tools, refractory coatings, and high-temperature industrial processes. Due to its superior mechanical strength and oxidation resistance, molybdenum boride plays a crucial role in advanced engineering, specialized coatings, and precision manufacturing.

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Product Overview
Molybdenum boride (Mo₂B) is a compound of molybdenum and boron that serves as a high melting point ceramic material. It offers excellent wear resistance, chemical stability, and thermal stability. It is commonly used as an additive in electronic tungsten and molybdenum alloys to enhance material performance, and it is widely applied in wear-resistant coatings, semiconductor films, and other high-performance applications.

Product Features

  • High Melting Point:Mo₂B has a high melting point, making it suitable for high-temperature environments.
  • Exceptional Wear Resistance:Mo₂B performs excellently as a wear-resistant coating material.
  • Chemical Stability:It has good chemical inertness, resisting chemical corrosion at high temperatures.
  • Wide Adaptability:It excels in various high-temperature, high-pressure, and harsh environments.

Applications

  • Electronics and Alloy Additive:Mainly used as an additive in electronic tungsten and molybdenum alloys, improving their physical properties.
  • Wear-Resistant Coating Materials:Used in the production of durable semiconductor films and coating materials, enhancing material durability.
  • High-Temperature Technology Applications:Applied in high-temperature environments, such as in high-temperature alloys and electronic device materials.
BrandChemical Composition %
BMoPSSiFe
Mo2B5.5Remain0.0080.0050.010.15

 

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