A Brief Introduction Titanium Carbide TiC Powder
Titanium carbide or TiC is a classic transition metal carbide that features a NaCl cubic crystal structure. a high melting point, hardness and a high Young's modulus. It also has high durability chemically, wear resistance and corrosion resistance and good electrical conductivity and thermal conductivity. Thus, it is able to be used in an extensive range of applications as well as a lot of potential for cutting tools for aerospace, components for aerospace, resistant coatings for wear, foam ceramics, and infrared radiation ceramics materials.
Application of Titanium Carbide TiC Powder
1. Useful to make a variety of multiphase materials
Titanium carbide-based ceramics are super hard tool materials, TiC and TiN, WC, A12O, and various other raw materials comprised of different multiphase ceramic materials These materials feature a great melting rate, a high hardness and excellent chemical stability. It is the preferred material to use for cutting tools and wear-resistant parts in addition, they exhibit excellent electrical conductivity is the material of choice for electrodes.
Cutting tool material: Thanks to the percentage of TiC dispersion of hard particles in the matrix, the composite cutting tools do not only to improve the hardness however, they also certain extent, improve the toughness of the fractures than the natural tool cutting performance a lot. A12o3-tic system ceramics can also serve as armor materials. For use as a tooling material, the hardness is higher than (C, N), and Ti(C N, C) because of N to use it on steel as well as other cutting materials friction coefficient much lower. There are many advantages of cutting. Through the combination of the advantages of Ti and (C, N) to form multiphase ceramics, a promising tool material can be developed.
2. Useful as coating materials
Diamond coating: The manufacturing method for diamond tools is mainly the powder metallurgy impregnation method. Because of the high interfacial energies between diamond and all metals or other alloys the diamond's surface can't be penetrated by alloys or metals that has a low melting which is why its bond performance is low. In the last few years, many experts have conducted a lot of work on improving the bond strength between diamond and metal matrix. The method that is active is the one most frequently used and involves adding an amount of titanium to metal bond, vanadium, chromium and other active metals, tools in the liquid phase sintering that is active. It is high carbon compounds , which form elements, and the affinity for diamonds is huge, which allows for increase the strength of the diamond surface in order to create the metallurgical combination of diamond and metal bond. However, the interface strength is influenced by the quantity of active metal used, sintering heat duration, as well as other parameters. It requires the dissolution of the binder in order to realize the enrichment of active metal towards the interface as this method isn't suitable for the hot pressing sintering of diamond and metal powder in a very short solid phase.
3. This is the method used to prepare foam ceramics
For filtration, foam ceramics are able to effectively eliminate inclusions throughout all types of fluids and their filtration method is Adsorption and agitation. This filter requires chemical stability of the material, especially in the industry of metallurgical that uses a high melting filtering. This type of material can be used to remove oxide in the majority, but also to adapt to the filtering mechanism of metal melt, which is the main objective of thermal shock resistance. Titanium carbide foams have more strength, hardness, electrical conductivity and heat, and heat and corrosion resistance than oxide foam ceramics.
4. For use in infrared radiation materials
Titanium carbide can be described as a kind of intermetallic compound. It has typically showed good chemical stability, without a change in the state of valence and is operating under conditions of high-temperature reduction of the preparation of samples, parts of titanium ions experience a delay and appear, hoping to titanium ion solid melting into the structure of the cordierite location, and changes in the structure. Comparing to a single-material its radiation properties of the material near 3tma is evidently improved, which is suitable for use in the field of high temperature.
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