Titanium carbide hard rods - preferred for tool manufacturing

Titanium carbide cemented carbide round rods are high-performance components fabricated through a powder metallurgy process, with titanium carbide serving as the primary hard phase and cobalt or nickel as the binder phase. These rods exhibit exceptional hardness exceeding HRC85 and superior wear resistance compared to conventional steel. They maintain stable mechanical properties even in high-temperature environments above 500 °C. Characterized by extremely high dimensional accuracy, the rods can achieve diameter tolerances within ±0.01 mm and surface roughness as low as Ra 0.02 μm, making them ideal for the production of precision cutting tools and mold cores. Tools manufactured from this material demonstrate a service life 10 to 20 times longer than those made from high-speed steel when machining difficult-to-cut materials such as stainless steel and titanium alloys, thereby significantly enhancing production efficiency. With advancements in 3D printing technology, titanium carbide cemented carbide has also been processed into feedstock powder for additive manufacturing of precision components. The resulting printed parts achieve a density of up to 99.5% of theoretical density, with mechanical performance comparable to that of traditionally sintered counterparts. In the photovoltaic industry, these rods are employed as cutting tools for silicon wafers, ensuring thickness variation is controlled within ±1 μm and contributing to improved solar cell conversion efficiency. Owing to their outstanding performance across diverse applications, titanium carbide cemented carbide round rods have become an essential material in advanced manufacturing sectors.
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