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Introduction to Titanium Carbide TiC Powder

Introduction to Titanium Carbide TiC Powder

Titanium carbide also known as TiC is a standard transition metal carbide, with a NaCl-type cubic crystal structure, a high melting point, high hardness and a high Young's modulus. It also has high Chemical stability, Wear resistance and resistance to corrosion and good electrical conductivity and thermal conductivity. This means it can be used in a wide range of applications and excellent potential for cutting tools, aerospace components, protective coatings against wear, foams, and infrared radiation ceramics materials.

Technologies of Titanium Carbide TiC Powder

1. It is used to create different multiphase materials

Titanium carbide clays are super hard tool materials, TiC and TiN, WCand A12O and other raw materials composed from various multiphase ceramic materials These materials have a large melting point and high hardness and excellent chemical stability. is the best material for cutting tools, wear-resistant components and also they are extremely electrically conductive is the material of choice for electrodes.

Cutting tool material: As a result of the proportion of TiC solid particle dispersion inside the matrix, the cutting tools made of composites not only help to increase the strength and durability, but also to a certain extent, improve crack toughness, which is greater than that of pure tool cutting performance a lot. A12o3-tic ceramics can be used as armor material. In the role of a tooling material its hardness is superior to (C, N) and Ti(C, N) because of N to enable it to be applied to steel and other cutting materials the friction reduction is drastically reduced. Many advantages are associated with cutting. By combining the advantages Ti and (C N, C) to create Multiphase Ceramics (MPC), a promising tool material can be created.

2. They are also used for coatings.

Diamond coating: This production method used for diamond tools is mostly a powder metallurgy impregnation method. Due to the high energy interfacial between diamond and the general alloy or metal it is not able to be coated with metal or alloy that have a low melting temperature and its bonding capability is not as good. In the last few years, many experts have conducted a lot of work on improving the strength of bonds between diamond and metal matrix. The active metal method is the one that is most commonly employed in that it involves the addition of a small amount of titanium in metal bond, vanadium, chromium, and any other active metals to sinter liquids, the active metal is high carbon compounds that form elements and the affinity for diamonds is significant, and easy to improve the surface of diamond in order to create the metallurgical connection of diamond and metal bond. The strength of the interface is affected by the amount of active metal, the sintering temperature in addition to other variables. This requires an extrusion of the binder in order to make it possible to enrich the active metal to the interface because this method is not suitable for the hot pressing Sintering of diamonds and metal powder in a very short solid phase.

3. Useful for preparing foam ceramics

For filtration, foam ceramics remove inclusions in any fluid and the mechanism for filtration is the agitation and adsorption. This filter requires chemical robustness of the material particularly in the field of metallurgical production that has a high melting point filter, and this type of material is able to be oxided in the majority, but it also has the ability to adjust to the filter of the metal melt, the most important goal that is thermal shock resistance. Titanium carbide foam ceramics have higher strength, hardness, electrical conductivity and heat, as well as corrosion and heat resistance as compared to oxide foams.

4. Utilized in infrared radiation materials

Titanium carbonide is a sort of intermetallic material, typically demonstrated good chemical stability, no changes in valence state or valence state. The system is subject to high temperature reduction of the preparation of samples. The components of titanium ions can show delay appearing, in the hope of the solid of titanium ions melting into the structure of cordierite structural position, change of the structure. Compared with a single material, the radiation performance of the compound near 3tma is evidently improved, which is ideal for applications in the area of high temperatures.

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