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Introduction to Titanium Carbide TiC Powder

An Introduction Titanium Carbide TiC Powder

Titanium carbide, also known as TiC is a common transition metal carbide that has a NaCl-type hexagonal crystal structure. a high melting point, hardness as well as a high Young's Modulus, high Chemical stability, Wear resistance as well as corrosion resistant as well as high electrical conductivity and thermal conductivity. Thus, it is suitable for an extensive range of applications as well as a lot of potential for cutting tools and aerospace components, high-wear coatings, foam ceramics, and infrared radiation ceramics materials.

Application of Titanium Carbide TiC Powder

1. Useful to make a variety of multiphase materials

Titanium carbide ceramics belong to super hard tool materials, TiC and TiN including WC, TiN, and other raw materials made of various multiphase materials These materials feature a large melting point and a high hardness and superior chemical stability. is the ideal material for cutting tools, wear-resistant products and also they possess excellent electrical conductivity and are the ideal material for electrodes.

Cutting tool material: Because of the proportion of TiC hard particles dispersed in the matrix, the composite cutting tools not only to improve the hardness as well, but also, to a degree, increase the toughness of fractures, which is higher than the pure tool cutting. The cutting performance of the composite tools is significantly. A12o3 system ceramics can be used as armor materials. In the role of a tooling material its hardness is superior to (C, N) and Ti(C, N) due to N. To help it work on steel, and other cutting materials the friction coefficient is significantly reduced. It has many advantages when cutting. By combining the advantages of Ti and (C, N) to create Multiphase Ceramics (MPC), a highly effective tool material is able to be made.

2. Useful as coating materials

Diamond coating: This manufacturing technique used to make diamond tools is generally the powder metallurgy impregnation method. Because of the large energy interfacial between diamond and general metal or alloy, the diamond's surface is not coated with metal or alloy with a melting point of low which is why its bond performance is insufficient. Since the past few years, numerous researchers have conducted a variety in research that has helped improve the bond strength between the metal matrix and diamond. The method of active metal is the one most frequently used approach, that is adding a small amount of titanium to metal bond, chromium, vanadium, and other active metals, tools for sintering liquid phase, the active metal is high carbon compounds are the basis of elements and the diamond affinity is big, easy to the enhancement of the diamond's surface in order to create the metallurgical union of metal bond and diamond. However, the strength of the interfacial bond is determined by the amount of active metal used, sintering heat as well as other variables, and it requires to dissolve the binder in order to enable the enrichment of active metal to the interface due to the fact that this method is not suitable for the hot pressing for sintering diamond and powder in a very short solid phase.

3. The foam ceramics are used to prepare

As a filtering device, foam ceramics can effectively remove inclusions in all kinds of fluids and their filtration method is agitation and adsorption. This filter requires chemical stability of the materials, particularly in the metallurgical field that has a high melting point filter, and this type of material can become oxide in the majority, but it also has the ability to adjust to the filtering of metal melt, which is the main goal and goal of thermal shock resistivity. Titanium carbide foam ceramics possess higher strength, toughness, heat and electrical conductivity, along with corrosion and heat resistance in comparison to oxide ceramics.

4. Ceramics used in infrared radiation materials

Titanium carbonide is a sort of intermetallic compoundthat has generally has good chemical stability, having no change in valence, and the system is subject to high-temperature reduction of the process of making samples. Some titanium ions show a delay effect to appear, intending to the solid titanium ion melting into the cordierite the structure. This is followed by a change in the structure. If compared with a single metal that has a single structure, the radiation efficiency of this material is clearly improved, which is beneficial for the use in the area of high temperatures.

Main Supplier of Titanium Carbide TiC Powder

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