Bio-soluble Fiber Board

Bio-soluble fiber board is a body soluble fiber that utilizes a unique spinning technology to create a special fiber with superior thermal and mechanical properties. This fiber is made from a blend of calcium, silica and magnesium and can be exposed to temperatures up to 1200°C. Bio-soluble fiber board does not have any hazard classification due to its low bio-persistence and bio-degradability. Perfect for workers and users to use without the hazardous fiber.

Products Details

Bio-soluble fiber board is a body soluble fiber that utilizes a unique spinning technology to create a special fiber with superior thermal and mechanical properties. This fiber is made from a blend of calcium, silica and magnesium and can be exposed to temperatures up to 1200°C. Bio-soluble fiber board does not have any hazard classification due to its low bio-persistence and bio-degradability. Perfect for workers and users to use without the hazardous fiber.
Type SPE-SF-STB
Classification Temperature (℃) 1050 1260
Operation Temperature (℃) <750 ≤1100
Density (Kg/m3)  240, 280, 320, 400
Permanent   Linear Shrinkage (%)(after 24 hours, 280Kg/m3) 750℃ 1100℃
≤-3.5 ≤-3.5
Thermal Conductivity (w/m. k) 600℃ 0.080-0.095
800℃ 0.112-0.116
Loss on ignition (%) (at 900℃x5hr) ≤6
Modulus of Rupture (Mpa)(280Kg/m3) ≥0.3
Size (mm) L400-2400×W300-1200×H10/100.0mm oras   customers’ size
Packing Carton or Thermal Plastic Film
Quality Certificate CE Certificate, ISO9001-2008
● Resists most chemical attacks ● Easy to cut, handle, and install ● Low sound transmission ● Light weight ● Resists penetration by molten aluminum and other non-ferrous metals ● Asbestos free● Refractory lining for industrial furnaces for walls, roofs, doors, stacks, etc. ● Combustion chamber liners, boilers, and heaters ● Back-up insulation for brick and monolithic refractories ● Transfer of molten aluminum and other non-ferrous metals ● Expansion joint boards ● Barrier against flame or heat ● Hot face layer for high velocity or abrasive furnace atmosphere● High temperature stability ● Excellent thermal shock resistance ● Excellent strength, hardness ● Exceptional machinability for precise dimensional control ● Low thermal conductivity ● Low heat storage ● Resistant to hot gas erosion

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