A Brief Introduction Titanium Carbide TiC Powder
Titanium carbide, also known as TiC is a typical transition metal carbide having a NaCl type cubic crystal structures, high melting point, high hardness as well as a very high Young's permeability, high chemical stability, high wear and resistance to corrosion as well as excellent thermal and electrical conductivity. It has numerous applications with great potential for cutting tools for aerospace, components for aerospace, the foam ceramics and coatings that resist wear, and infrared radiation ceramics materials.
The applications for Titanium Carbide TiC Powder
1. The multiphase materials are used to make different materials
Titanium carbide is a type of ceramic that belongs to super hard tooling materials, TiC and TiN, WCand A12O and other raw materials made out of multi-phase ceramics These materials possess a high melting point, a high hardness and excellent chemical stability. is the most preferred material for cutting tools, wear-resistant components and also they possess excellent electrical conductivity which makes them the best choice for electrodes.
Cutting tool material: Because of a percentage of TiC dispersion of hard particle in the matrix, the Composite cutting tools do not just to improve the hardness as well, but also, to a degree, increase the strength of the fracture, more than the pure tool cutting performance a lot. A12o3-tic systems can be utilized as armor materials. As a tool material, its hardness is superior to (C N, C) and Ti(C N, C) due to N. To use it on steel as well as other cutting materials the friction coefficient much lower. Numerous advantages can be gained from cutting. Combining the advantages of Ti and (C, N) to form multiphase ceramics, an promising tool material can be prepared.
2. Useful as coating materials
Diamond coating: The production process of diamond tools uses mainly the powder metallurgy impregnation method. Due to the high interaction energy between diamonds and common metal or alloy the surface of diamond is not attracted by alloys or materials that has a low melting point as well as its bonding capacity is insufficient. Recently, many experts have conducted a lot of work on improving the strength of bonds between the metal matrix and diamond. The method that is active is the most popular in that it involves the addition of an amount of titanium to strengthen the bond between metal and vanadium or chromium. other active metal, tool to sinter liquids that is active. It is made up of high carbon compounds. These form the elements and the affinity for diamonds is high, which enables improve the surface of diamond to enable the metallurgical union of metal bond and diamond. However, the strength of an interface is determined by the amount of active metal, sintering temperatures in addition to others, and needs liquid dissolution in the binder in order to realize the enrichment of active metal in the direction of the interface due to the fact that this method is not suitable for hot press sintering of diamond and metal powder in a very short solid phase.
3. Utilized to prepare foam ceramics
as a filtering agent, ceramics have the ability to remove impurities within all sorts of fluids Its filtration mechanism is Adsorption and agitation. The filter needs the chemical solidity of the substance, particularly in the field of metallurgical production which has a high melting filtering, which means this type of material is able to be oxided in the majorityof cases, but also to adapt to the filter of the metal melt, the most important goal with respect to resistance against thermal shock. Titanium carbide foam ceramics have more strength, hardness, heat and electrical conductivity, as well as corrosion and heat resistance in comparison to oxide ceramics.
4. Ceramics used in infrared radiation materials
Titanium carbide is a type of intermetallic substance, and has usually demonstrated good chemical stability, no change of valence state as well as the system is at a high temperature reduction in the making of samples. The components of titanium ions can show delay to develop, which is a sign of titanium ion solid melting into the structure of the cordierite structural position, change of the structure. In comparison to a single component, the radiation performance of this material is obviously improved, which is ideal for applications in the area of high temperature.
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