Tungsten Steel Circular Saw Blades 8-150mm OD for Metal Cutting with Carbide Teeth and Custom Specifications
High-performance tungsten carbide circular saw blades engineered for precision cutting in hardware, electronics, and plastic industries. These industrial-grade tools deliver exceptional cutting efficiency and extended service life.
- Superior Cutting Performance: Precision-engineered blade design ensures clean, efficient cuts across various materials
- Enhanced Wear Resistance: Premium tungsten steel construction provides extended blade lifespan
- Multi-Material Compatibility: Suitable for cutting metals, plastics, and electronic components
- Precision Manufacturing: Advanced machining techniques guarantee consistent blade geometry and cutting stability
Widely used in hardware processing, electronic manufacturing, and plastic fabrication operations. Ideal for applications requiring high precision and production efficiency in both large-scale manufacturing and small-batch production environments.
| No. | OD (mm) | ID (mm) | Thickness (mm) | Teeth Count | Material Grade | Processing Materials |
|---|---|---|---|---|---|---|
| 1 | 8 | 3-5 | 0.2-2.0 | 8,12,24 | PY40T / TW15 | Cast iron, quenched steel, nonferrous metals, nonmetal materials |
| 2 | 10 | 4-6 | 0.2-2.0 | 8,12,24 | PY40T / TW15 | Cast iron, quenched steel, nonferrous metals, nonmetal materials |
| 3 | 12 | 4-6 | 0.2-2.0 | 12,16,32 | PY40T / TW15 | Cast iron, quenched steel, nonferrous metals, nonmetal materials |
| 4 | 16 | 5-6 | 0.2-2.5 | 12,24,48 | PY40T / TW15 | Cast iron, quenched steel, nonferrous metals, nonmetal materials |
| 5 | 20 | 5-8 | 0.2-3.0 | 24,32,48 | PY40T / TW15 | Cast iron, quenched steel, nonferrous metals, nonmetal materials |
| 6 | 24 | 5-8 | 0.2-3.0 | 32,48,56 | PY40T / TW15 | Cast iron, quenched steel, nonferrous metals, nonmetal materials |
| 7 | 25 | 5-8 | 0.2-3.0 | 32,48,64 | PY40T / TW15 | Cast iron, quenched steel, nonferrous metals, nonmetal materials |
| 8 | 32 | 5-8 | 0.2-3.5 | 48,64,72 | PY40T / TW15 | Cast iron, quenched steel, nonferrous metals, nonmetal materials |
| No. | OD (mm) | ID (mm) | Thickness (mm) | Teeth Count | Material Grade | Processing Materials |
|---|---|---|---|---|---|---|
| 1 | 40 | 8-12.7 | 0.2-4.0 | 24,32,40 | YS2T / TSM2 | Carbon steel, high temperature alloy, stainless steel, titanium alloy, resin, fiber, graphite |
| 2 | 45 | 8-16 | 0.2-4.0 | 32,64,80 | YS2T / TSM2 | Carbon steel, high temperature alloy, stainless steel, titanium alloy, resin, fiber, graphite |
| 3 | 50 | 12.7-16 | 0.2-4.0 | 64,80,100 | YS2T / TSM2 | Carbon steel, high temperature alloy, stainless steel, titanium alloy, resin, fiber, graphite |
| 4 | 63 | 16 | 0.2-6.0 | 64,80,100 | YS2T / TSM2 | Carbon steel, high temperature alloy, stainless steel, titanium alloy, resin, fiber, graphite |
| 5 | 75 | 22 | 0.2-6.0 | 64,80,120 | YS2T / TSM2 | Carbon steel, high temperature alloy, stainless steel, titanium alloy, resin, fiber, graphite |
| 6 | 80 | 22 | 0.3-6.0 | 64,80,120 | YS2T / TSM2 | Carbon steel, high temperature alloy, stainless steel, titanium alloy, resin, fiber, graphite |
| 7 | 90 | 25.4 | 0.2-2.0 | 80,100,128 | YS2T / TSM2 | Carbon steel, high temperature alloy, stainless steel, titanium alloy, resin, fiber, graphite |
| 8 | 100 | 25.4 | 0.5-8.0 | 80,100,120 | YS2T / TSM2 | Carbon steel, high temperature alloy, stainless steel, titanium alloy, resin, fiber, graphite |
| 9 | 125 | 25.4 | 0.7-10.0 | 80,100,120 | YS2T / TSM2 | Carbon steel, high temperature alloy, stainless steel, titanium alloy, resin, fiber, graphite |
| 10 | 130 | 27 | 1.2-10.0 | 80,120,160 | YS2T / TSM2 | Carbon steel, high temperature alloy, stainless steel, titanium alloy, resin, fiber, graphite |
| 11 | 140 | 32 | 0.2-2.0 | 120,160,180 | YS2T / TSM2 | Carbon steel, high temperature alloy, stainless steel, titanium alloy, resin, fiber, graphite |
| 12 | 150 | 40 | 0.2-2.0 | 120,160,200 | YS2T / TSM2 | Carbon steel, high temperature alloy, stainless steel, titanium alloy, resin, fiber, graphite |
Our tungsten carbide production follows rigorous quality control procedures including raw material selection, precision mixing, high-pressure molding, controlled sintering, heat treatment, and final machining to ensure superior hardness and wear resistance.
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