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Tungsten carbide (chemical formula: WC) is a chemical compound (specifically, a carbide) containing equal parts of tungsten and carbon atoms. In its most basic form, tungsten carbide is a fine gray powder, but it can be pressed and formed into shapes through sintering [7] for use in industrial machinery, engineering facilities, [8] molding blocks, [9] cutting tools, chisels, abrasives, armor ...
Tungsten compounds are often used as industrial catalysts. Its largest use is in tungsten carbide, a wear-resistant metal used in metalworking, mining, and construction. [22] About 50% of tungsten is used in tungsten carbide, with the remaining major use being alloys and steels: less than 10% is used other compounds. [23]
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Tungsten ore concentrates are processed into ammonium paratungstate (APT) and then into tungsten metal powder, tungsten carbide and ready-to-press powders. GTP has a subsidiary, Bruntál (Czech Republic), and was integrated into the Plansee Group on 1 August 2008 following approval by the antitrust authority, becoming the fourth division at ...
The first cemented carbide developed was tungsten carbide (introduced in 1927) which uses tungsten carbide particles held together by a cobalt metal binder. Since then, other cemented carbides have been developed, such as titanium carbide, which is better suited for cutting steel, and tantalum carbide, which is tougher than tungsten carbide. [1]
Some of them, including titanium carbide and tungsten carbide, are important industrially and are used to coat metals in cutting tools. [3] The long-held view is that the carbon atoms fit into octahedral interstices in a close-packed metal lattice when the metal atom radius is greater than approximately 135 pm: [2]
During this period the company developed a new type of anti-tank projectile made of tungsten with a hard carbide core. [ 10 ] The company has expanded through acquisitions, [ 11 ] [ 12 ] including the purchase of Widia Group (2002, 188 million Euros) [ 13 ] Extrude Hone Corp. (2005, $137 million) [ 14 ] and Allegheny Technologies' tungsten ...
The discovery of superhard tungsten tetraboride is further evidence for the promising design approach of covalently bonding incompressible transition metals with boron. While WB 4 was first synthesized and identified as the highest boride of tungsten in 1966, [52] it was only recognized as an inexpensive superhard material in 2011. [53]