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Tungsten boride(B5W2)
Product Name: Five boron tungsten (B5W2)  Specification: 0.8-10um (D50)  Appearance: Irregular  Color: Black Grey  Features: high melting point, high hardness, high oxidation resistance, good chemical stability, superhard material  Application: High temperature catalysts, wear-resistant materials, high-temperature protective coatings, electronic materials, chemical synthesis raw materials and other fields
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Product details
Tungsten boride(B5W2)

Product Name: Five boron tungsten (B5W2) 
Specification: 0.8-10um (D50) 
Appearance: Irregular 
Color: Black Grey 
Features: high melting point, high hardness, high oxidation resistance, good chemical stability, superhard material 
Application: High temperature catalysts, wear-resistant materials, high-temperature protective coatings, electronic materials, chemical synthesis raw materials and other fields

Chemical formula: B5W2 
English name Tungsten border 
CAS: 12007-09-9 
EINECS: 234-498-8  
Molecular weight: 194.65 
Density: 15.200 
Melting point: 2365 ℃ 
Density: 10.77g/cm3 
Water solubility: Solve in water 
Storage conditions: Room Temperature 
Appearance: Powder 
nature: 
-Tungsten boride is an intermetallic compound. 
-It has very high hardness and wear resistance, harder than ordinary steel. 
-It is a brittle material that is prone to fracture. 
Manufacturing method: 
-Tungsten boride is usually prepared by high-temperature solid-state reaction. 
-Mix metal tungsten and boron compounds (such as boron powder) evenly. 
-Then, at high temperatures (usually above 2000 ° C), the reaction is carried out under solid-phase conditions to generate tungsten boride. 
Purpose: 
-Tungsten boride is mainly used in the manufacture of high-speed cutting tools and other applications that require superhard materials. 
-It can be used to process various hard materials such as steel, cast iron, and alloys. 
-Tungsten boride is also used to manufacture cutting-edge electronic devices and thin film materials in the semiconductor industry. 
It has wide applications in aviation, aerospace, semiconductor, and electronics fields, such as being used as thermal barrier coatings, high-temperature thermocouples, tungsten wire heaters, semiconductor epitaxial substrates, and ceramic wear-resistant parts. It is a ceramic material with extremely high hardness and good corrosion resistance, widely used in various industrial and scientific research fields under extreme environments such as high temperature, high pressure, and strong magnetic fields. Has high hardness, strength, and melting point similar to diamond. It also has good conductivity and thermal conductivity, and can be used as an electric heating element and heat sink at high temperatures.

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