Details

Ceramic plate

Mã SP :       ceramic

Giá :           Liên hệ

Mô tả :       Ceramic panels are manufactured by ceramic fiber refractories, providing effective solutions to a wide range of heat management problems. Utilizing our exclusive high output blowing and spinning techniques, these products provide superior insulating performance, flexibility and resilience.

High-temperature ceramic panels exhibit outstanding resistance to extreme heat, capable of withstanding temperatures as high as 1200°C. These high-temperature ceramic panels offer top-notch heat resistance due to their advanced ceramic engineering and material properties.

These 25mm thick ceramic panels are designed to withstand temperatures of up to 1260°C. They are manufactured from fire-resistant ceramic fiber materials, providing effective solutions for a wide range of heat management challenges. Through our exclusive high-output blowing and spinning techniques, these products deliver excellent insulation performance, flexibility, and recovery capability.

Applications for this product include:

Furnace lining, door lining, and pit seal, including hot face seals for repair and heating furnaces and boilers.

Product Specifications:

  • Density: 250 – 320 Kg/m3
  • Panel dimensions are available in two types:
    • 0.6m x 0.9m x 25mm (1 box contains 4 panels)
    • 0.6m x 0.9m x 50mm (1 box contains 2 panels)
  • Heat resistance: 1260 and 1430°C

Product Features:

  • High tensile strength
  • Excellent mechanical strength
  • Low thermal conductivity, low shrinkage, low density
  • Outstanding heat capacity
  • Good sound absorption
  • Thermal shock resistance

The benefits of using these high-temperature ceramic panels include:

Reducing thermal losses from exhaust gases, maximizing fuel utilization, and reducing unit energy consumption.

  1. Improving theoretical combustion temperature, enhancing combustion conditions, meeting high-temperature requirements of thermal equipment, and expanding the application range of low-calorific-value fuels, especially in the realm of high-temperature furnace applications, thereby increasing the utilization rate of low-calorific-value fuels.

  2. Enhancing the heat exchange conditions of the furnace, increasing equipment output and product quality, and reducing equipment investment.

  3. Reducing emissions of exhaust gases and harmful gases from a thermal equipment unit, decreasing air pollution, and improving the environment.

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