Ceramic Fiber Blanket

For ceramic fiber blanket, the core keywords are "flexible roll-shaped" and "porous heat insulation". It uses calcined bauxite as the raw material and is formed through processes such as melting into fibers, needle-punching and hot pressing. Due to the porous structure formed by the interweaving of internal fibers, it has extremely low thermal conductivity. Additionally, it is soft and elastic with low bulk density, making it easy to cut and lay. It is widely used in high-temperature heat insulation scenarios such as kiln linings and pipeline insulation, balancing construction convenience and energy-saving effects.

Refractory & High-Temperature Products

Ceramic Fiber Blanket

Fireproof and Flame Retardant:Can be in direct contact with flame
Thermal Conductivity:Low
Slag Ball Content:Low
Tensile Strength:High
Heat Insulation and Fire Resistance:Easy to Cut and Install
Cut:Easy to Install

Product Video

Applications of Ceramic Fiber Blanket Products

  1. Lining for industrial building material kilns, heating devices, high-temperature pipeline walls; thermal insulation for power plant boilers, turbines, and nuclear power equipment.
  2. Lining for high-temperature reaction equipment and heating equipment in the chemical industry.
  3. Fire protection and thermal insulation for high-rise buildings.
  4. Thermal insulation for kiln doors and top covers.

Three Major Advantages of Ceramic Fiber Blanket

  1. Fireproof and Flame-Retardant
    It contains no organic binders at all, ensuring that the ceramic fiber blanket maintains excellent effectiveness and stability under both high-temperature and low-temperature working conditions, and can be in direct contact with flames.
  2. Low Thermal Conductivity and Low Shot Content
    With mature production processes and continuously optimized product characteristics, it is a cost-effective thermal insulation material for high-temperature and high-heat equipment.
  3. Good Tensile Strength
    The mature production process makes the fiber interweaving tighter. After the needle-punching process, the fiber interweaving degree, anti-delamination performance, tensile strength and surface flatness are greatly improved.
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