High-density titanium carbide rods
Hard alloy titanium carbide round rods can be tailored into products with varying properties by adjusting the titanium carbide content (typically ranging from 70% to 90%) and the proportion of binder. When the titanium carbide content is higher, the material exhibits enhanced wear resistance, making it suitable for rough machining applications. Conversely, increasing the binder proportion improves toughness, rendering the material more appropriate for fine machining processes. With a density of only 6.5 g/cm³, these rods are approximately 20% lighter than tungsten carbide rods of the same dimensions, making them ideal for the production of lightweight tools. In the 3C electronics industry, they are commonly used for machining precision components such as mobile frames and laptop shells, ensuring scratch-free surfaces and minimal dimensional deviations. As a critical material in high-end manufacturing, hard alloy titanium carbide round rods demonstrate excellent corrosion resistance and are resistant to rust or degradation in humid, acidic, or alkaline environments. Their thermal conductivity is 15% higher than that of traditional tungsten carbide rods, enabling efficient heat dissipation during cutting and reducing the risk of tool wear caused by overheating. Additionally, these rods possess a bending strength of up to 2500 MPa, combining high hardness with a degree of toughness, which helps prevent breakage due to impact during operation. In the aerospace industry, precision machining tools made from this material are frequently employed in the fabrication of engine components, meeting the stringent requirements of high-precision manufacturing.
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