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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 popular transition metal carbide having a NaCl type cubic crystal structure. a high melting point, hardness and high Young's molecular, excellent Chemical stability, Wear and resistance to corrosion and high electrical conductivity and thermal conductivity. Thus, it is able to be used in numerous applications as well as a lot of potential for cutting tools and aerospace components, high-wear coatings, foam ceramics, and infrared radiation ceramics materials.

Applications of Titanium Carbide TiC Powder

1. The multiphase materials are used to make different materials

Titanium carbide ceramics belong to super hard tooling materials, TiC and TiN including WC, TiN, and other raw material made of various multiphase ceramic materials, these materials have a higher melting point as well as a high hardness, excellent chemical stability, is the most popular material for cutting tools and wear-resistant parts however, they exhibit excellent electrical conductivity, is the preferred material for electrodes.

Cutting tool material: Because of the percentage of TiC hard particles dispersed in the matrix, the composite cutting tools are not just able improve the toughness however, they also degree, increase the toughness of the fractures than that of pure tool cutting performance by quite a bit. A12o3-tic system ceramics may also be used as armor materials. It is a suitable tool material. it has a higher hardness than (C N, C), and Ti(C N, C) because of N to help it work on steel, and other cutting materials friction coefficients are greatly reduced. Numerous advantages can be gained from cutting. Through the combination of the advantages of Ti and (C, N) to form multiphase ceramics, it is a promising tool material can easily be made.

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

Diamond coating: This production process for diamond tools follows typically the impregnation of powder metal using the method. Because of the high interfacial energy of diamond and all metals or other alloys, the diamond's surface is not permeated by alloys or metals with a melting point of low and its bonding capability is not as good. Since the past few years, numerous scientists have conducted a large amount of research on enhancing the strength of bonds between diamond and the metal matrix. The method of active metal is the most commonly used and involves adding the tiny amount of titanium in metal bond, chromium, vanadium, and other active metals. When used to sinter liquids in which the active element is high carbon compounds form elements and the affinity for diamonds is huge, which allows for increase the surface of the diamond to enable the metallurgical mixture of metal bond and diamond. However, the strength of the interfacial bond can be affected by the amount of active metal in the mix, as well as the temperature of sintering and duration as well as others, and needs that the binding agent dissolve in order to enhance the activity of the metal to the interface due to the fact that this method is not suitable for the hot pressing sintering of the diamond and metal powder in a fast solid phase.

3. Utilized to prepare foam ceramics

as a filtering agent, ceramics remove inclusions in any fluid and the mechanism for filtration is agitation and adsorption. The filter is dependent on the chemical stability of the materials, especially in the industry of metallurgical that has a high melting point filtering, which means this type of material can become oxide in the majorityof cases, and also adapts to the filter of metal melt, the main pursuit of thermal shock resistance. Titanium carbide foam clays have more strength, hardness, electrical conductivity and heat and heat and corrosion resistance in comparison to oxide ceramics.

4. For use in infrared radiation materials

Titanium carbide can be described as a kind of intermetallic compound. It has typically had good chemical stability and there is no change in the valence state, and the system is in the process of high-temperature reduction of preparation of samples, parts of titanium ions experience a delay and appear, hoping to melt the titanium ion into the cordierite position and change in the structure. When compared to one material the radiation efficiency of the compound near 3tma is evidently improved, which is good for application in the area of high temperature.

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