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Introduction to Titanium Carbide TiC Powder

A Brief Introduction Titanium Carbide TiC Powder

Titanium carbide or TiC is a typical transition metal carbide that features a NaCl cubic structure. It has a high melting point, hardness with a high Young's modus, high durability chemically, wear resistance and corrosion resistance, and excellent thermal and electrical conductivity. Therefore, it has a wide range of applications and great potential in cutting tools and aerospace components, anti-wear coatings, foam and infrared radiation materials.

Uses of Titanium Carbide TiC Powder

1. The multiphase materials are used to make different materials

Titanium carbide is a type of ceramic that belongs to the super-hard tooling materials TiC and TiN, WC, A12O and other raw materials made of multiphase ceramics The materials are known for their large melting point and a high hardness, excellent chemical stability, is the material of choice for cutting tools, wear-resistant parts in addition, they are extremely electrically conductive and is the most commonly used material for electrodes.

Cutting tool materials: Due to the percentage of TiC hard particle dispersion in the matrix, Composite cutting tools do not just to increase the strength however, they also, to a some extent, enhance their toughness to fractures, greater than the natural tool cutting. The cutting performance of the composite tools is significantly. A12o3 system ceramics can be used as armor-grade materials. It is a suitable tool material. the toughness is more than (C, N) and Ti(C, N) because of N to allow it to be used on steel and other cutting materials the friction coefficient much lower. There are many advantages of cutting. Through the combination of the advantages of Ti and (C, N) to create multiphase clays, a promising cutting material can be produced.

2. For coating purposes, they are used as materials.

Diamond coating: The production technique for diamond tools employs typically the impregnation of powder metal using the method. Because of the large cross-facial energy that diamond has with the general alloy or metal the surface of diamond is not filled with alloys or other metals with a melting point of low which is why its bond performance is low. In the last few years, many scholars have done a lot of studies on increasing the bond strength between metal and diamond. The method that is active is one of the most extensively used technique, which involves adding some titanium to metal bond, vanadium or chromium. others that are active, and tool for sintering in liquid phase, the active metal is high carbon compounds form elements, and the diamond affinity is substantial, making it easy to the enhancement of diamond's surface, so as to realize the metallurgical bond of diamond and metal bond. However, the strength of the interfacial bond will be affected by the amount of active metal in the mix, as well as the temperature of sintering and duration as well as other variables. It is necessary to achieve removal of the binder to enable the enrichment of active metal to the interface since this method isn't suitable for hot press or sintering between diamond and powder in a relatively short solid phase.

3. Used to prepare foam ceramics

as a filtering agent, ceramics are able to effectively eliminate inclusions in any fluid and its filtering mechanism is an agitation process and adsorption. The filter requires the chemical stability of the material, particularly in the metalurgical industry with a high melting point filter, so this kind of material can become oxide generally, as well as to adjust to the filtering mechanism of metal melt, the most important goal of thermal shock resistance. Titanium carbide ceramics are characterized by stronger strength, harderness electrical conductivity and heat, and also have better resistance to heat and corrosion than oxide foam ceramics.

4. Used in infrared radiation ceramic materials

Titanium carbide is an example of intermetallic substance, and has usually demonstrated good chemical stability, there is no change in the valence state or valence state. The system is under the condition of high-temperature reduction of preparation of samples. Some titanium ions show a delay effect to manifest, and are aimed at melt the titanium ion into the structure of the cordierite location, and changes in the structure. When compared to one material that has a single structure, the radiation efficiency of the titanium carbide near 3tma level is evidently improved, which is beneficial for the use in the field of high temperature.

Main Source of Titanium Carbide TiC Powder

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