Application of catalyst wear-resistant material grain inhibitor vanadium carbide CY-F50CY-F100
Vanadium carbide has the general characteristics of transition metal carbides such as high hardness, melting point, and high-temperature strength, as well as good conductivity and thermal conductivity. Therefore, it is widely used in fields such as steel metallurgy, hard alloys, electronic products, catalysts, and high-temperature coating materials. Among them, adding vanadium carbide to steel can improve the comprehensive properties of steel such as wear resistance, corrosion resistance, toughness, strength, ductility, hardness, and thermal fatigue resistance. It can also be used as a wear-resistant material in different cutting and wear-resistant tools. In addition, due to its high activity, selectivity, stability and the ability to resist "catalyst poisoning" in hydrocarbon reactions, vanadium carbide has also been widely used as a new catalyst. In addition, vanadium carbide can also be used as a new carbon source to synthesize diamonds. The most important role of vanadium carbide is as a grain inhibitor applied in the fields of hard alloys and cermets, which can effectively prevent the growth of WC grains during the sintering process. In addition, vanadium carbide can also serve as a potential component for negative electrode materials and supercapacitors in lithium-ion batteries, and nitrogen doped vanadium carbide can serve as a potential counter electrode catalyst in solar cells.
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