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Introduction to Titanium Carbide TiC Powder

The Introduction of Titanium Carbide TiC Powder

Titanium carbide, also known as TiC is a very common transition metal carbide with NaCl-type cubic crystal structures, high melting point, hardness as well as a very high Young's permeability, excellent durability chemically, wear as well as corrosion resistant and excellent thermal and electrical conductivity. Thus, it is able to be used in an array of uses and is a good candidate for cutting tools and aerospace components, wear-resistant coatings, foam ceramics and infrared radiation materials.

applications of Titanium Carbide TiC Powder

1. Made up of various multiphase materials

Titanium carbide Ceramics are part of super-hard tool materials, TiC and TiN as well as WC, A12O and various other raw materials comprised out of multi-phase ceramics, these materials have a great melting rate, high hardness as well as excellent chemical stability. is the best material for cutting tools and wear-resistant parts, at the same time they exhibit excellent electrical conductivity and is the most commonly used material for electrodes.

Cutting tool material: Because of an amount of TiC dispersion of hard-particles in the matrix, the cutters made from composites are not just to further improve the hardness, but also to a degree, increase their toughness to fractures, greater than the pure tool cutting performance a lot. A12o3-tic system-based ceramics could be utilized as armor materials. For use as a tooling material, the hardness is higher than (C N, C) and Ti(C N, C) due to N. To allow it to be used on steel and other cutting materials, the friction coefficients are greatly reduced. Many advantages are associated with cutting. Combining the advantages of Ti and (C N, C) to form multiple-phase ceramics. A promising tool material can be developed.

2. For coating purposes, they are used as materials.

Diamond coating: The manufacturing technique used to make diamond tools is most often the powder metallurgy impregnation method. Because of the high interfacial energies between diamond and generally-used metal or alloy, the diamond surface cannot be infiltrated by metal or alloy with a melting point of low which is why its bond performance is insufficient. In recent times, many researchers have conducted a variety of study to enhance the strength of bonds between the metal matrix and diamond. The active metal method is one of the most extensively used one, which is the addition of only a tiny amount of titanium to strengthen the bond between metal and chromium, vanadium, and other active elements, as well as tools for sintering in liquid phase The active metal is made up of high carbon compounds. These form the elements and the diamond affinity is substantial, making it easy to the enrichment of diamond surface, so as to realize the metallurgical connection of diamond and metal bond. However, the strength at the interface depends on the quantity of active metal and sintering temperature in addition to others, and needs an extrusion of the binder to allow the enhancement of active metal to the interface due to the fact that this method is not suitable for the hot pressing sintering process of diamond and powder over a brief time solid phase.

3. Useful for preparing foam ceramics

As a filter, foam ceramics effectively removes inclusions within all sorts of fluids as well as its filtration process is the agitation and adsorption. The filter must have the chemical stability of the materials, especially in the metallurgical industry with a high melting point filter, and this type of material is able to be oxided in the majority, as well as to adjust to the filtering of metal melt, the principal goal that is thermal shock resistance. Titanium carbide foams have higher strength, hardness, heat and electrical conductivity, plus corrosion and heat resistance than oxide foam ceramics.

4. Utilized in infrared radiation materials

Titanium carbide is a type of intermetallic chemical compound, that usually demonstrated good chemical stability, having no change in valence as well as the system is operating under conditions of high-temperature removal of samples. Some titanium ions are prone to delay appearing, in the hope of melt into the structure of cordierite the structure. This is followed by a change in the structure. When compared with a single substance that is a single material, the radiation capability of the compound near 3tma is significantly improved, and is suitable for use in the area of high temperatures.

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