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The Properties And Applications of Titanium Carbide Powder

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Titanium carbide TiC has the chemical symbol TiC. It is a metallic-looking steel gray carbide crystal with thermal and electrical conductivity.

Titanium Carbide Powder Properties

Titanium carbide, a compound that is extremely hard and has a melting point of over 900°C, is also a highly corrosive material. It is harder than diamond, but has weaker magnetic properties. Titanium carbide has a low magnetic property and is not soluble with water.
Titanium carbide reacts with pure oxygen at 1150degC. Titanium carbide is a solid that has the same crystal structure as TiN or TiO.




Titanium Carbide Applications

Titanium carbide can be used for a variety of purposes. As the technology for the microwave synthesis nano-TiC is improved and industrialized, the performance and applications of nano-TiC will continue to improve.

1. Use of titanium carbide as a multiphase material
Titanium carbide ceramics, also known as super hard tool materials (TiC), are composite materials made from TiC and TiN. WC,A12O and various other raw materials. These materials, which have a high melting temperature, high hardness and excellent chemical resistance, are used for cutting tools, wear-resistant components and other products. It is also the material of choice for the electrode because it has excellent electrical conductivity.

2. Titanium carbide can be used as a coating material
Titanium carbide has many uses, such as anti-tritium coating for fusion reactors and electrical contact material, or roadheader pick coating. Depositing a layer on the tool will increase its service life by 3-5 times.

3. Foam ceramics can be prepared using titanium carbide
As a filter ceramic foam can effectively remove inclusions in different fluids. The filtering mechanisms are agitation, and adsorption. Titanium carbide Foam Ceramics are more resistant to heat, corrosion, and have a greater hardness.

4. Infrared radiation ceramics use titanium carbide
Titanium carbide, an intermetallic material, is usually chemically stable and doesn’t change its valence, making it a great choice for applications in high temperatures.

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