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Cotronics 372HT is a wet moldable sheet that will adpat to all geometries.

After drying, we achieve a thermal and light insulation which resists to thermal shocks.

The sheet is made up of refractory fibers resistant up to 2700°C.

This product is available in thickness 12mm, width 600mm and length 3800mm or 1830mm, for bigger packaging please contact us.

    • Moldable and wet sheet
    • Ceramic fibers
    • Excellent thermal insulation
    • Maximum temperature 2700°C
    372HT-3

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    Ceramic Fibre Felts )

    Technical Datasheet: Ceramic Fibre Felts


      Carbon/graphite felt or zirconia felt: what are the differences in terms of performance?

      Felts made from carbon/graphite fibre are excellent at withstanding high temperatures, and are used up to 3,000°C. These felts are stable up to 2,000°C, but only in an inert, oxygen-free environment. Otherwise, they oxidise above 300°C. Unlike carbon/graphite felts, zirconia felts are resistant to temperatures up to 2,000°C, even in the presence of oxygen in the environment.


      Why are biosoluble felts a safe alternative to asbestos and to refractory ceramic fibre?

      Final Advanced Materials' biosoluble fibre felts are a safe alternative to replace asbestos-based insulation or other refractory fibres. These fibres have low biopersistence, meaning the body can eliminate any inhaled fibre rapidly and naturally. These felts have a low thermal conductivity and a temperature resistance of up to 1,400°C, and are used primarily as oven coatings, but also as a customisable local thermal insulation.


      What high-temperature felt or blanket can withstand a continuous exposure to temperatures exceeding 1,500°C?

      The only felts capable of withstanding a continuous exposure to temperatures exceeding 1,500°C are ceramic (Al2O3), zirconia (ZrO2) or graphite fibre-based felts. Each felt has specific constraints: graphite felts can only be used in an inert atmosphere or in a vacuum, while zirconia felts have poor mechanical properties, and ceramic fibre felts can only resist temperatures up to 1,650°C.

      The other felt families (glass, silica, biosoluble, RCF, basalt, etc.) cannot withstand a continuous exposure to more than 1,260°C.


      What is the thermal conductivity of insulating blankets made of biosoluble fibre?

      The material has a thermal conductivity of 0.06 W/m·K at 200°C, and 0.30 W/m·K at 1,000°C. It is substantially lower than that of conventional refractory materials (often between 1 and 2 W/m·K at these temperatures). The felts offered by Final Advanced Materials are available in several densities, ranging from 64 to 160 kg/m3. The higher the density, the lower the conductivity which can go as low as 0.20 W/m·K at 1,000°C.