Introduction to Titanium Carbide TiC Powder
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The Introduction of Titanium Carbide TiC Powder
Titanium carbide, also known as TiC is a standard transition metal carbide that has a NaCl-type cubic crystal structure, high melting point, hardness and a high Young's modulus. It also has high chemical stability, wear and resistance to corrosion as well as high electrical conductivity and thermal conductivity. It has numerous uses and is a good candidate for cutting tools for aerospace, components for aerospace, protective coatings against wear, foams and infrared radiation materials.
Utilization of Titanium Carbide TiC Powder
1. Made up of various multiphase materials
Titanium carbide ceramics belong to super-hard tool materials, TiC and TiN as well as WC, A12O along with other raw materials made out of multi-phase ceramics These materials possess a large melting point and high hardness and superior chemical stability. is the preferred material for cutting tools, wear-resistant products as well as they offer excellent electrical conductivity is the material of choice for electrodes.
Cutting tool material: Because of a certain percentage of TiC solid particle dispersion inside the matrix, cutting tools made of composites not only help to further improve the hardness however, to a certain extent, improve the toughness of fractures, which is higher than the natural tool cutting tools by a significant amount. A12o3 system ceramics can serve as armoring materials. As a tool material, the toughness is more than (C, N), and Ti(C, N) because of N to help it work on steel, and other cutting materials friction coefficient is significantly reduced. It has many advantages when cutting. By combining the advantages Ti and (C N, C) to create Multiphase Ceramics (MPC), a highly effective tool material can be prepared.
2. Useful as coating materials
Diamond coating: This production technique used to make diamond tools is mostly the impregnation process using powder metallurgy method. Because of the large interfacial energy of diamond and general metal or alloy, the diamond surface cannot be coated with metal or alloy with a low melting point as well as its bonding capacity is not as good. In recent times, many scholars have conducted a lot of study to enhance the bond strength between the metal matrix and diamond. The method that is active is the most commonly used in that it involves the addition of tiny amounts of titanium in the metal bond vanadium, chromium, as well as others that are active, and tool for sintering in liquid phase, the active metal is high carbon compounds are the basis of elements, and the affinity for diamonds is big, easy to enhance the diamond's surface and thereby achieving the metallurgical connection of diamond and metal bond. However, the interface strength will be affected by the amount of active metal and sintering temperature along with other factors, and demands an extrusion of the binder to enhance the activity of the metal towards the interface as this method isn't suitable for hot press sintering of diamond and metal powder in a fast solid phase.
3. Useful for preparing foam ceramics
For filtration, foam ceramics can effectively remove inclusions in all fluids and the mechanism for filtration is agitation and adsorption. The filter needs the chemical robustness of the material particularly in the metallurgical sector that uses a high melting filtering. This type of material can be used to remove oxide most of the time, however, it can also be adapted to the metal melt, the main pursuit of thermal shock resistance. Titanium carbide foams offer greater hardness, strength, heat and electrical conductivity, plus corrosion and heat resistance over oxide foam ceramics.
4. Used in infrared radio ceramic materials
Titanium carbonide is a sort of intermetallic substance, and has usually shows good chemical stability with that is, there is no change in valence in the system. under high-temperature removal of samples. The components of titanium ions can show delay and appear, hoping to the solid titanium ion melting into the structure of cordierite location, and changes in the structure. When compared to one material, the radiation performance of the material in the vicinity of 3tma has obvious improvement, which is good for application in the field of high temperature.
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