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Introduction to Titanium Carbide TiC Powder

An Introduction Titanium Carbide TiC Powder

Titanium carbide or TiC is a common transition metal carbide having a NaCl type cubic crystal structure, a high melting point, high hardness and a high Young's modulus. It also has high mechanical stability and wear resistance and corrosion resistance, as well as good electrical conductivity and thermal conductivity. It has numerous applications and great potential in cutting tools for aerospace, components for aerospace, anti-wear coatings, foam and infrared radiation materials.

Applications of Titanium Carbide TiC Powder

1. It is used to create different multiphase materials

Titanium carbide ceramics make up super hard tool materials TiC and TiN along with WC, A12O as well as other raw materials that are made of various multiphase ceramic materials The materials are known for their large melting point and hardness, and high with excellent chemical stability. is the preferred material for cutting tools and wear-resistant parts in addition, they offer excellent electrical conductivity and are the most preferred material for electrodes.

Cutting tool materials: Due to a certain percentage of TiC hard particles dispersed in the matrix, the cutting tools made of composites not only help to improve the hardness, but also to a degree, increase crack toughness, which is greater than that of pure tool cutting performance by quite a bit. A12o3 system ceramics can be used as armor-grade materials. As a tool material, the hardness is much higher than (C N, C), and Ti(C, N) because of N to enable it to be applied to steel and other cutting materials the friction coefficient is significantly reduced. There are many advantages of cutting. Through the combination of the advantages of Ti and (C N, C) to form multiphase clays, a promising tool material can be prepared.

2. The materials are used as coating materials

Diamond coating: The production technique used to make diamond tools is mostly the impregnation process using powder metallurgy method. Due to the high interfacial energies between diamond and any general metal, it is not able to be affected by any alloy or metal with a lower melting point and bonding efficiency is not as good. Recent years have seen many researchers have conducted a great deal of studies on increasing the bond strength between metal and diamond. The active metal method is the one most frequently used one, which is the addition of tiny amounts of titanium to strengthen the bond between metal and vanadium, chromium and other active metals. When used to sinter liquids where the active material is high carbon compounds , which form elements and the affinity for diamonds is substantial, making it easy to increase the surface of the diamond in order to create the metallurgical bond of diamond and metal bond. However, the interface strength depends on the quantity of active metal and sintering temperature duration, as well as other variables. This requires to dissolve the binder in order to enable the enrichment of active metal to the interface as this technique is not suitable for hot press for sintering diamond and powder in a very short solid phase.

3. Used to prepare foam ceramics

A filter, ceramics can effectively remove inclusions in all types of fluids and the mechanism for filtration is Adsorption and agitation. This filter requires chemical durability of the material particularly in the metalurgical industry which has a high melting filter, which is why this kind materials will oxide most of the time, and also adapts to the filter of metal melt, which is the main goal with respect to resistance against thermal shock. Titanium carbide foams offer higher strength, hardness, electrical conductivity, in addition to corrosion resistance and heat in comparison to oxide ceramics.

4. For use in infrared radiation materials

Titanium carbide can be described as a kind of intermetallic compounds, which have generally displayed good chemical stability. no change of valence state as well as the system is under high-temperature reduction of preparation of samples. Some titanium ions exhibit a delay phenomenon to manifest, and are aimed at the solid titanium ion melting into the structure of the cordierite arrangement, changing the structure. When compared with a single substance, the radiation performance of the titanium carbide near 3tma level is evidently improved, which is beneficial for the use in the area of high temperatures.

Main Distributor of Titanium Carbide TiC Powder

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