La doublure résistante à l'abrasion est une doublure industrielle résistante à l'usure, aux chocs et à la corrosion

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March 19, 2024
Brief: Discover the Hot Vulcanizing Rubber Ceramic Liners, a high-performance industrial wear-resistant solution designed for extreme conditions. This abrasion-resistant lining combines ceramic blocks, rubber, and steel plates to create a durable, impact-resistant, and corrosion-resistant layer, perfect for high-wear environments.
Related Product Features:
  • Combines ceramic blocks, rubber, and steel plates for superior wear resistance.
  • Designed for high wear and high impact conditions, ideal for abrasive environments.
  • Ceramic blocks (Al2O3) provide excellent surface wear protection.
  • Rubber modules absorb impact energy, reducing noise and enhancing durability.
  • Easy and fast installation with high-strength bolts and steel plates.
  • Corundum ceramics offer high hardness, wear resistance, and long service life.
  • Surface is dense and smooth, preventing material adhesion and reducing equipment load.
  • Widely used in thermal power, steel, building materials, and other high-wear industries.
FAQ:
  • What industries are the Hot Vulcanizing Rubber Ceramic Liners suitable for?
    These liners are ideal for industries with severe wear and tear, including thermal power, steel, building materials, smelting, machinery, coal, chemical, organic silicon, coal chemical, coal-to-oil, and port and wharf industries.
  • How does the rubber ceramic lining improve equipment performance?
    The lining enhances equipment performance by reducing material adhesion, lowering equipment load, and improving mixing and granulation capabilities. It also increases the effective diameter of mixers and reduces operator labor intensity.
  • What are the key technical parameters of the alumina ceramics used in the lining?
    The alumina ceramics feature Al2O3 content ≥92%, Mohs' hardness of 9, water absorption ≤0.02%, density ≥3.60 g/cm3, and abrasion ≤0.02%, ensuring high durability and wear resistance.