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Tel: +1 (905) 319-1080 l 3264 Mainway, Burlington, Ontario, CA, L7M 1A7
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Blanket

FibreCast blanket is highly insulating and comes in a variety of chemistries, densities, and thicknesses. This product has both low heat storage and complete resistance to thermal shock.

 

Soluble  

Soluble fibres are low bio-persistence fibers that significantly reduce damage to the human cell, making them a safer option to work with. Soluble fibres can be used in working environments up to 2300°F/1260°C.

Isofrax

Temperature Grade: 1260°C/2300°F

Characteristics:  low thermal conductivity, excellent thermal stability, lightweight, excellent thermal shock resistance, good handling strength, low heat storage, flexibility, excellent corrosion resistance, and excellent chemical stability

Insulfrax

Temperature Grade: 1260°C/2300°F

Characteristics: flexible, strong, lightweight, needled (eliminates the need for binders and results in high tensile strength), completely inorganic (no smoke generation), excellent resistance to thermal shock, and low thermal conductivity.

 

High Purity Ceramic Fibre

Temperature Grade: 2300°F/1260°C.

This blanket is made from alumina-silica materials which create a stable and insulating product with low thermal conductivity, low heat storage, and excellent thermal shock resistance. These blankets also provide superior corrosion resistance. 

 

Zirconia

Temperature Grade: 2600°F/1430°C.

This blanket is made from alumina-silica-zirconia fibres and features high tensile strength, low thermal conductivity, and low shrinkage. This product is ideal for ceramic, chemical processing, and ferrous metal industries as hot face lining and backup insulation in high-temperature processes.

 

Maftec/Polycrystalline Mullite

Temperature Grade: 3000°F/1650°C.

This blanket is an extremely durable and performs well at high temperatures. Low shrinkage of the product translates into longer life leading to fuel and maintenance cost savings. The chemical stability of this product ensures that the refractory lining stays intact over time. During initial fire up, there is little or no shrinkage therefore minimizing the gaps in modular linings as well as wallpaper designs ensuring long maintenance-free performance. 

This is a high-tech blanket with very low thermal conductivity and resistance to chemical attack. The crystalline microstructure and high-temperature classification result in a highly resilient fiber even when exposed to elevated temperatures. 

This blanket is appropriate in the conditions of most industrial processes and is used to form stack bonded and composite modules for use in the linings of kilns, furnaces, and heaters in all industry sectors.