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Product Details:
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| Place of Origin: | China |
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| Brand Name: | Sanxin |
| Certification: | ISO |
| Model Number: | SX1302 |
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Payment & Shipping Terms:
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| Minimum Order Quantity: | 1 |
| Delivery Time: | 5-30days |
| Payment Terms: | T/T,L/C,Western Union |
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Detail Information |
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| Features: | Sharp Edged | Blade Type: | Cutting Blade |
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| Business Type: | Manufacturer | Edge Retention: | Long-Lasting |
| Impact Resistance: | Excellent | Service: | OEM & ODM |
| Other Name: | Tungsten Carbide Cutter | Item: | Carbide Non-standard Shaped Blade |
| Precision: | Accurate Cutting | Melting Point: | 2,870°C |
Product Description
In precision metalworking—particularly when machining magnetic materials, manufacturing components for sensitive equipment, or operating in EMI-sensitive production environments—standard carbide cutting tools present significant risks. Magnetic tool substrates can transfer residual magnetism to workpieces, interfere with in-process measurement systems, and compromise final component performance.
Our Non-Magnetic Precision Cutting Tools are engineered specifically to overcome these challenges. Manufactured from advanced WC-Ni (Tungsten Carbide-Nickel) alloy systems, these tools deliver the essential combination of absolute magnetic neutrality, exceptional hardness, and superior wear resistance for the most demanding metalworking applications—from aerospace alloy turning to medical device micro-machining and magnetic material cutting.
WC-Ni based cutting tools achieve impressive mechanical properties that rival or exceed conventional carbide grades:
| Property | Typical Value |
|---|---|
| Hardness | 930 - 1,175 HV |
| Comparable Hardness (HRA) | ~90 - 92 HRA |
| Flexural Strength | 2.0 - 3.1 GPa |
| Compressive Strength | > 4,000 MPa |
This hardness translates to 3-5x longer tool life than hardened tool steel and comparable wear resistance to standard carbide—but without the magnetic drawbacks.
WC-Ni based cutting tools have demonstrated 3.2% to 7.9% lower friction coefficients compared to conventional WC-Co tools, leading to smoother cutting action, reduced heat generation, and extended tool life.
| Tool Type | Description | Typical Applications |
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| Turning Inserts | Precision-ground indexable inserts for external/internal turning | Magnetic material turning, precision shaft machining |
| Grooving & Cut-Off Inserts | T-blade style and full-radius grooving tools | Groove cutting, part-off operations, oil groove machining |
| Milling Inserts | Square, round, and octagonal styles for face/end milling | Surface finishing, shoulder milling, slotting |
| Threading Inserts | Full-profile and partial-profile designs | Internal/external threading on magnetic alloys |
| Boring Bars & Holders | Solid carbide bars with integrated non-magnetic properties | Deep-hole boring, internal contouring |
| Custom Profiles | Application-specific geometries per customer drawing | Non-standard profiles, special form tools |
| Grade | Hardness (HRA) | TRS (MPa) | Key Characteristics | Best Applications |
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| WC-Ni Standard | 90.0 - 91.5 | 2,200 - 2,800 | Balanced wear resistance and toughness | General turning, milling |
| WC-Ni-Cr | 89.0 - 90.5 | 2,000 - 2,600 | Excellent corrosion resistance | Medical, chemical machining |
| WC-Ni Fine Grain | 91.5 - 92.5 | 2,800 - 3,200 | High edge strength, superior finish | Precision finishing, micro-machining |
| WC-Ni Nanocomposite | 92.0 - 93.0 | 3,000 - 3,500 | Ultra-high wear resistance | High-volume production, abrasive materials |
| Non-Magnetic Cermet | 91.0 - 92.0 | 2,000 - 2,500 | Excellent surface finish, low adhesion | Finishing of hardened steels |
Years of experience manufacturing precision carbide components for magnetic-sensitive metalworking applications
Deep understanding of cutting tool geometry, material science, and machining processes
In-house capabilities including CNC grinding, wire EDM, and precision finishing
Consistent quality, reliable delivery, and professional export documentation worldwide
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