SSiC บุช

Brief: Discover the Customized Silicon Carbide Ceramic Sleeve / Bushing, designed for long life in industrial machinery. This high-temperature ceramic bearing offers superior resistance to corrosion, reduced friction, and exceptional durability in harsh environments. Ideal for aerospace, automotive, and chemical processing applications.
Related Product Features:
  • High temperature resistance up to 1650℃ for extreme industrial conditions.
  • Low density (3.15-3.18 g/cm3) for lightweight performance.
  • High strength and hardness (2800 HV5) for durability.
  • Low thermal expansion (4.0 x10-6/℃) ensures stability under temperature fluctuations.
  • Superior chemical stability, resistant to acids and alkalis, including hydrofluoric acid.
  • Self-lubricating properties enable operation without oil in high-vacuum environments.
  • Electrical insulation and non-magnetic properties for specialized applications.
  • Customizable designs to meet specific industrial machinery requirements.
คำถามที่พบบ่อย:
  • What are the primary advantages of ceramic sliding bearings over traditional steel bearings?
    Ceramic sliding bearings offer high resistance to corrosion, reduced friction and wear, high temperature tolerance, and can operate without lubrication in harsh environments.
  • In which industries are these silicon carbide ceramic sleeves commonly used?
    They are widely used in aviation, aerospace, navigation, petroleum, chemical, automotive, electronic equipment, metallurgy, electric power, and medical instruments due to their high performance and durability.
  • Can these ceramic sleeves be customized for specific applications?
    Yes, we provide fully customized services, including design adjustments based on customer drawings or samples, ensuring the product meets specific industrial requirements.
  • How does the thermal expansion of ceramic bearings compare to steel bearings?
    Ceramic bearings have a lower thermal expansion coefficient (4.0 x10-6/℃) than steel, making them more stable under temperature fluctuations and reducing thermal deformation.