Advantages of Silicon Carbide Cutting Tools
Silicon carbide cutting tools have higher hardness and thermal stability, making them ideal for high-speed machining of metal, ceramic, and glass. Their wear resistance reduces tool wear, enhancing precision and minimizing production costs.
Applications of Silicon Carbide Cutting Tools
Engineered for extreme hardness, thermal stability, and precision, Newthink’s Silicon Carbide cutting tools excel across high-demand industries—from semiconductors to aerospace.
Metal Machining and CuttingGood hardness and resistance to wear, hence well appropriate for high-speed turning, milling, and drilling of hard metals.
Processing Ceramic ComponentsOwing to high strength and thermal stability, well appropriate for cutting and shaping advanced ceramics used in electronic and aerospace industries.
Cutting Glass and Optical MaterialsLow burr formation and sharpness of SiC tools ensure precise cutting of glass and optical materials, enhancing surface quality.
Semiconductor Wafer DicingProviding the precision and hardness that are required to dice semiconductor wafers with low chipping and high yield.
Aerospace Component ManufacturingThe thermal stability at elevated temperatures renders them suitable for machining heat-resistant superalloys used in aerospace components.
Automotive Brake Disc ProductionExploited in the production of ceramic brake discs, ensuring excellent performance even in adverse conditions.
Features of Silicon Carbide Cutting Tools
See the superior properties that SiC ceramic cuttiing tools have.
Silicon carbide is extremely hard, second only to diamond, to ensure superior wear resistance.
Resistant to high heat, withstanding strength and performance in heavy cutting operations.
Lighter than steel, it reduces tool weight, enhancing machine efficiency.
Acid and alkali proof, it performs reliably in corrosive environments.
Its sharpness minimizes burr formation, producing smoother finishes.
Durable and wear-resistant, it offers increased life, reducing replacement rates.
Efficiently dissipates heat, reducing thermal stress and enhancing tool longevity.
Offering a balance of performance and affordability, providing a durable alternative to more expensive materials.
Why Choose Newthink Silicon Carbide Cutting Tools?
Auswahl Newthink Das bedeutet, sich für gleichbleibende Qualität zu entscheiden, denn wir liefern genau das, was Sie brauchen.
Lean manufacturing helps us offer competitive pricing—even for high-performance SiC components.
With state-of-the-art CNC and grinding facilities to manage demanding tolerance specifications of high-precision cutting processes.
Customized anti-shock packaging for fragile SiC tools to minimize breakage during worldwide shipment.
ISO9001-zertifiziert production and shipments to 40+ countries ensure trusted performance and batch consistency for high-end industries.
Silicon Carbide Cutting Tools Production Workshop
With over 14 years of history, Newthink’s world-class facility boasts top-of-the-line CNC and ultra-precision grinding equipment, providing high-precision manufacturing of SiC cutting tools. Uncompromising ISO-certified quality control from raw material inspection to final product inspection guarantees consistent performance. Robust packaging solutions are employed to protect the fragile nature of SiC tools during global shipping.
Economic Benefits of Silicon Carbide Cutting Tools
Silicon carbide cutting tools reduce total machining cost by enhancing tool life, minimizing tooling replacement, and reducing downtime. Their high-speed and high-precision machining sharpness retention improves product quality and reduces subsequent processing needs. Additionally, their wear and corrosion resistance also significantly lower maintenance rates and spare parts expenses.
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Parameters for Different Types of Silicon Carbide
Below is a comparison of key parameters across different SiC manufacturing methods.
- Datasheet
| Item | Unit | Data | ||||
| RBSiC(SiSiC) | NBSiC | SSiC | RSiC | OSiC | ||
| Max service temperature | ℃ | 1380 | 1450 | 1650 | 1620 | 1400 |
| Density | g/cm3 | 3.02 | 2.75-2.85 | 3.08-3.16 | 2.65-2.75 | 2.75-2.85 |
| Open porosity | % | 0 | 13-15 | 0 | 15-18 | 7-8 |
| Bending strength 20℃ | Mpa | 250 | 160 | 380 | 100 | / |
| Bending strength 1200℃ | Mpa | 280 | 180 | 400 | 120 | / |
| Modulus of elasticity 20℃ | Gpa | 330 | 580 | 420 | 240 | / |
| Modulus of elasticity 1200℃ | Gpa | 300 | / | / | 200 | / |
| Thermal conductivity 1200℃ | W/m.k | 45 | 19.6 | 100-120 | 36.6 | / |
| Coefficient of thermal expansion | K-1x10-6 | 4.5 | 4.7 | 4.1 | 4.69 | / |
| HV | kg/mm2 | 2115 | / | 2800 | / | / |
Verwandte Produkte
Refractory Plate/SlabFlat plate for high-temp load or separation.
Refractory SheetThin flexible/semi-rigid high-temp material.
High-Purity Silicon Carbide Powder Supplier Providing Premium Solutions
Offering precision, durability, and reliability for your most demanding applications.
Silicon Carbide cutting tools are premium products that will generally be more costly initially than conventional carbide tools. But their longer lifespan in certain uses will often times make them an excellent long-term value.
Silicon Carbide cutting tools are tougher and last longer when cutting abrasive or heat materials than tungsten carbide. Silicon carbide cutting tools are, however, less resistant to shock, therefore making tungsten carbide harder and often better suited for interrupted or heavy cuts.
Silicon Carbide cutting tools are especially useful in machining abrasive and non-ferrous materials. They are extensively used for cutting aluminum, copper alloys, certain plastics (like PEEK), and composite materials due to their exceptional hardness and wear resistance; however, they are generally not used for cutting steel due to brittleness.