Diamond logs MCD/CVD/Polycrystalline

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June 16, 2025
Category Connection: Mechanical CVD Diamond
Brief: Discover the superior performance of CVD Diamond Logs for precision grinding and complex profile processing. Engineered from ultra-pure CVD single crystal diamonds, these logs are ideal for high-performance bar dressers, offering unmatched stability and longevity in industrial applications. Perfect for grinding wheel conditioning and precision machining.
Related Product Features:
  • Crafted from ultra-pure CVD single crystal diamonds for exceptional hardness and wear resistance.
  • Optimized for manufacturing high-performance bar dressers with precision and durability.
  • Excels in complex profile machining and precision grinding operations for enhanced process control.
  • Supports high-volume production with minimal downtime, ensuring operational efficiency.
  • Scalable manufacturing ensures consistent bulk availability for reliable supply.
  • Ideal for abrasive wheel conditioning, specialized cutting systems, and surface finishing tools.
  • Features high thermal conductivity, low friction coefficient, and excellent chemical stability.
  • Customizable in size, thickness, shape, and crystal orientation to meet specific industrial needs.
FAQs:
  • What are the key advantages of CVD Diamond Logs?
    CVD Diamond Logs offer enhanced process control, operational efficiency, and supply reliability. They excel in complex profile machining and precision grinding, supporting high-volume production with minimal downtime.
  • What industrial applications are CVD Diamond Logs suitable for?
    They are ideal for abrasive wheel conditioning, specialized cutting systems, surface finishing tools, wear-resistant components, and custom tooling solutions in various manufacturing needs.
  • What are the technical specifications of CVD Diamond Logs?
    Available sizes range from 2~20mm in length and 0.1mm to 3mm in thickness, with lateral tolerance of +0.15,-0mm and thickness tolerance of +0.1,-0.05mm. They feature polished surfaces with Ra<10nm and laser-cut edges with kerf <3°.