E-Glass Fibre Felts 700 °C

E-Glass Fibre Felts, heat-resistant up to 700 °C

E-glass fibre stands out for its resistance to high temperatures and its excellent electrical insulation properties. This rot-proof material remains dimensionally stable against strong variations in humidity and temperature and can resist the main chemical agents. While glass filaments with a diameter bigger than 9 µm can irritate the skin, filaments of less than 3 µm are respirable and can build up in the respiratory system. To prevent these risks, only glass fibre products manufactured using filaments between 6 and 9 µm are proposed.

The E-glass fibre needle felts provided by Final Advanced Materials offer excellent dielectric, mechanical and chemical properties. Moreover, these products can withstand peak temperatures up to 700 °C and operating temperatures up to 550 °C.

Final Advanced Materials proposes untreated E-glass fibre needle felts or with an adhesive, steel or an aluminium finish. These different treatments improve the felts' properties, such as their resistance to wear, cutting, splashes of molten metal or to radiant heat.

These E-glass fibre products complement Newtex’s product range.

For more information regarding the availability, refer to the technical data sheet.

     Main Applications of E-Glass Fibre Felts

  • Acoustic insulation
  • Thermal insulation

General Data of E-Glass Fibre

Technical Data of E-Glass Fibre

Physical variables included in this documentation are provided by way of indication only and do not, under any circumstances, constitute a contractual undertaking. Please contact our technical service if you require any additional information.

E-Glass Fibre Felt (147.39k)

Technical Data Sheet: E-Glass Fibre Felt


E Glass Fibre (221.04k)

Technical Data Sheet: E Glass Fibre


Glass Fibre Tape (155.43k)

Technical Datasheet: Glass Fibre Tape


FAQs that can help you in this category

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.