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Corrosion-resistant titanium carbide rods for chemical equipment

Compared with traditional high-speed steel bars, the cutting speed of hard alloy titanium carbide round bars can be increased by 3 to 5 times, and the processing time can be significantly shortened in mass production. Its microstructure is uniform, and the grain size can be controlled below 1μm, ensuring consistent performance of all parts of the bar and avoiding tool failure caused by uneven material. In the mold industry, the service life of cold stamping die inserts made from it is 50 to 100 times that of steel inserts, which can significantly reduce the replacement frequency and production costs. The production process of this round bar is extremely strict. From the purity control of titanium carbide powder (purity ≥99.5%) to the precise regulation of sintering temperature (about 1500℃), every step affects the final performance. The finished product has excellent dimensional stability. Under temperature variation conditions ranging from -50℃ to 300℃, its coefficient of thermal expansion is only 6×10⁻⁶/℃, significantly lower than that of metallic materials, ensuring the accuracy of precision tools in various environments. Wear-resistant inserts widely used in automotive molds can withstand long-term high-pressure friction without easy wear, thereby extending the service life of the molds.

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