Setting the gold standard in non-metallic mineral processing with advanced diamond sintering technology for minimal kerf loss and maximum efficiency.
In the competitive landscape of abrasive tools, the thin diamond blade represents the pinnacle of material efficiency. Our products occupy a dominant market position by reducing material waste during the slicing of expensive non-metallic minerals.
By leveraging vacuum brazing and laser-welded technology, our thin diamond blade series ensures an unparalleled stability-to-thickness ratio, effectively eliminating blade deflection in high-speed industrial applications.
Our diamond tools are engineered based on three non-negotiable pillars of excellence to ensure zero-failure operation.
Utilizing only the finest synthetic diamonds and cobalt binders for maximum hardness.
Exact dimensional control to ensure minimal vibration and perfectly straight cuts.
Advanced cooling profiles to maintain structural integrity at 50,000+ RPM.
Data-driven proof of our superior diamond bonding efficiency and tool longevity.
Comprehensive data for selecting the ideal diamond tool for your specific material hardness.
| Product Series | Diameter (mm) | Thickness (mm) | Bore Size (mm) | Max Speed (RPM) | Primary Material |
|---|---|---|---|---|---|
| Ultra-Thin Pro X1 | 100 | 1.2 | 20 | 12,000 | Quartz / Ceramic |
| Industrial Slim S2 | 125 | 1.5 | 22.23 | 10,500 | Hard-glass / Semi-precious |
| Precision Cut P3 | 80 | 1.0 | 10 | 15,000 | Sapphire / Ruby |
| Heavy Duty HD4 | 180 | 2.0 | 32 | 7,500 | Granite / Basalt |
| Optical Slim O5 | 60 | 0.8 | 5 | 18,000 | Optical Glass |
| Ceramic Master C6 | 110 | 1.4 | 20 | 11,000 | Alumina Ceramic |
| Gemstone G7 | 50 | 0.7 | 3 | 20,000 | Diamond-core Slicing |
| Custom Tailor T8 | Custom | 0.5-3.0 | Custom | Custom | Client Specified |
Note: All specifications are subject to slight variations based on custom bonding requests. Contact our engineers for bespoke design.
Proven performance across diverse industries and challenging environments.
High-Purity Silicon Slicing
Implemented ultra-thin 1.0mm blades to reduce material loss by 15%, significantly increasing yield per ingot.
Ruby & Sapphire Slicing
Achieved micron-level precision cuts for luxury jewelry components, reducing post-cut polishing time by 30%.
Precision Optical Slicing
Reduced blade deflection by 40% for thin-walled lenses, ensuring perfectly orthogonal surfaces for high-end cameras.
Alumina Heat-Shields
Developed custom cobalt-matrix blades for extremely hard alumina, increasing blade lifespan by 2.5x under continuous load.
Hard Rock Sample Slicing
Enabled high-throughput analysis by implementing high-speed thin blades, reducing sample prep time by 50%.
Micro-chip substrate cutting
Integrated specialized thin-cut blades for gallium nitride substrates, reducing edge chipping by 60%.
Tailored solutions for demanding industrial environments worldwide.
Precision slicing of mineral samples for chemical analysis and geological mapping.
Slicing of semi-precious stones and gemstones with ultra-thin kerfs for maximum value.
Production of ultra-thin optical wafers and high-refractive index lens blanks.
Slicing of ceramic substrates for high-frequency power electronics and semiconductors.
Cutting of heat-resistant ceramics for turbine components and space-grade shielding.
Processing of piezoelectric ceramics for sensors and energy harvesting devices.
Every blade undergoes automated high-speed balancing to eliminate vibration, preventing tool breakage.
Custom-molded EVA foam inserts and vacuum-sealed moisture barriers ensure tools arrive in factory condition.
Full batch reporting for diamond purity and bonding agents, providing transparency for aerospace and medical clients.
Certified by global industrial standards for abrasive tools and export quality management.
Expert answers to common technical and commercial inquiries.
A thin diamond blade reduces friction and heat buildup, which minimizes thermal expansion of the workpiece, ensuring higher dimensional accuracy.
While it depends on diameter, our thin diamond blade series is balanced for speeds up to 20,000 RPM. Always refer to the technical data sheet.
Ensure a steady feed rate and utilize proper coolant. Our thin diamond blade is cryogenically treated to resist warping.
Yes, we offer specialized bonds for carbides and nitrides. Every thin diamond blade can be tailored to the specific material hardness.
Depending on the material, our thin diamond blade typically lasts 30% longer than industry standards due to superior bonding agents.
Absolutely. We can engineer a thin diamond blade to any specific diameter, bore, or thickness required by your machinery.
Experience the difference in non-metallic mineral processing with our industry-leading thin diamond blade technology.



Address
No.30 Gaoying Road ,Chang'an District,Shijiazhuang,Hebei Province
Business Hours
Mon to Saturday : 8.00 am - 7.00 pm
Sunday & Holidays : Closed
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