Hard alloy titanium carbide guide wheel industry
Titanium carbide hard alloy guide wheels exhibit an exceptionally broad operational temperature range, maintaining stable mechanical and functional performance across temperatures from −100 °C to 600 °C. This thermal robustness enables reliable application in both cryogenic environments—such as frozen pipe manufacturing—and high-temperature processes—including hot rolling. The hub and flange are integrally machined (rather than welded or bonded), eliminating risks of interfacial delamination or structural detachment and extending service life to over 100,000 hours. In cable manufacturing, these guide wheels ensure precise control of insulation layer concentricity, limiting radial deviation to ≤0.05 mm—thereby preserving dielectric integrity and overall electrical performance. Dynamic balance conforms to ISO 1940–1 Grade G0.4; under high-speed rotation, peak-to-peak vibration amplitude remains below 0.01 mm, significantly mitigating equipment-induced vibration and noise and enhancing occupational safety and workshop environmental quality. Owing to outstanding chemical inertness, the wheels do not react with metallic conductors—preventing surface contamination, discoloration, or material transfer. Particularly in precious metal wire drawing (e.g., gold and silver), the non-reactive, ultra-clean surface minimizes adhesion and loss of valuable material, thereby improving yield and reducing production costs.
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| Customized titanium carbide hard alloy guide wheels | The surface of the guide wheel can be specially treated as required. For instance, after being sprayed with a diamond coating, its wear resistance ... | |
| Reduce the sintering temperature of titanium carbide powder by 200℃ | This powder has excellent electrical and thermal conductivity, with an electrical conductivity of 3×10⁴S/m and a thermal conductivity of 35W/... | |
| Production of titanium carbide powder by aerosolization process | This powder has good electrical and thermal conductivity, electrical conductivity of 3 × 10⁴S/m, thermal conductivity of 35W/(m-K), can be ... | |
| Chromium carbide powder perfectly combined with nickel/cobalt-based alloys | The main methods for preparing this powder include the electric arc furnace method and the carbothermal reduction method. Among them, the powder pr... | |
| High purity titanium carbide powder | Titanium carbide TiC powder are mainly used in the steel-bonded cemented carbide, cermet components, tungsten-cobalt-titanium cemented carbide and ... |
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