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Titanium carbide powder with enhanced wear resistance

Titanium carbide powder can be mixed with other carbide powders (such as tungsten carbide and vanadium carbide) to form multi-component composite powders and customize materials with different properties. For instance, after adding 10% tungsten carbide powder, the flexural strength of the sintered body can be increased by 15%, making it suitable for manufacturing parts that bear impact loads. There are various methods for preparing powders, including carbothermal reduction and vapor deposition. Among them, the powder produced by carbothermal reduction has a relatively low cost and is suitable for large-scale application. In the mold industry, molds made of multi-component composite powders are not only wear-resistant but also impact-resistant, and have a wider range of applications. Titanium carbide powder is a grayish-black ultrafine powder with a purity of over 99.9%, and an average particle size ranging from 0.5 to 5μm. It features a high melting point (3140℃) and high hardness (Mohs hardness 9-10). It is the core raw material for preparing titanium carbide hard alloys and ceramic materials. In powder metallurgy, when mixed with cobalt and nickel powders and sintered, it can be made into high-performance alloys. The powder has good sphericity and excellent fluidity, with a bulk density of 2.5-3.0g/cm³, which can ensure the uniformity of the composition of the sintered products and prevent the occurrence of pores or segregation. In the production of cemented carbide, the addition of titanium carbide powder can increase the wear resistance of the alloy by 20-30%, and it is widely used in cutting tools, molds and other fields.


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