Ceramic grinding wheel
Ceramic grinding wheel
Ceramic grinding wheel
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  • Ceramic grinding wheel
  • Ceramic grinding wheel
  • Ceramic grinding wheel

Ceramic grinding wheel

Ceramic Grinding Wheel This product is widely used in soft, sticky and heat-resistant materials (rubber, resin)

  • Commodity name: Ceramic grinding wheel

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  • Product Description
  • 1. Core Technology and Materials
    Selected high-purity corundum abrasive materials are combined with high-density ceramic binders. Through three core processes - high-temperature sintering, precise molding, and dynamic balance calibration - the product is manufactured. The product has no sand holes or cracks, and its density is uniform and consistent. The ceramic binder endows it with high-temperature resistance, acid and alkali resistance, and strong chemical stability. Even under continuous high-temperature grinding conditions, the abrasive material maintains a stable shape, does not fall off, or chip.


    2. Performance Advantages
    High-temperature resistance and deformation resistance: The ceramic binder has a much higher heat resistance than resin binders. It does not soften or crack under high-temperature conditions. The dimensional deviation of the workpiece after grinding is small, making it suitable for scenarios such as heat treatment of workpieces and continuous high-temperature processing.
    High efficiency and low consumption: The abrasive material has a high utilization rate, excellent grinding efficiency, and longer single-cycle operation time. This reduces frequent equipment shutdown and replacement of grinding discs, resulting in a reduction of more than 40% in overall processing costs.
    Safe and stable: Through strict strength and dynamic balance testing, there is no violent vibration during operation, no risk of debris flying, and the operating noise is reduced, ensuring the safety of operators and equipment.
    Excellent processing quality: The grinding surface is smooth and flat, with low roughness, which can reduce subsequent grinding processes and improve overall processing efficiency and product qualification rate.


    3. Application Scenarios
    Mechanical manufacturing: Fine grinding, rough grinding, and outer circle grinding of metal components such as gears, shafts, and molds;
    Hardware processing: Surface grinding, chamfering, and deburring of stainless steel and carbon steel hardware parts;
    Automobile parts: Precision grinding of engine parts, brake discs, and bearing sleeves;
    Industrial machining centers: Batch grinding operations on assembly lines, suitable for high-load and high-frequency processing requirements.

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