Ceramic Fiber Blanket

Product Description

Kovatex Ceramic Fiber Blanket is a lightweight, flexible, and highly efficient high-temperature insulation material made from high-purity alumina-silica fibers. Designed for superior thermal resistance, it can withstand extreme temperatures up to 1600°C, making it an ideal choice for industrial applications requiring low thermal conductivity, excellent heat retention, and thermal shock resistance. Manufactured using advanced spinning and needling techniques, our ceramic fiber blankets provide enhanced durability, superior tensile strength, and easy handling without the use of binders or adhesives.

Engineered for energy efficiency and cost-effectiveness, Kovatex Ceramic Fiber Blanket is available in various thicknesses and densities to suit diverse insulation needs. Its lightweight, flexible, and fire-resistant properties make it perfect for use in high-temperature furnaces, kilns, boilers, and other industrial applications requiring superior heat protection and minimal heat loss.

Characteristics

  • High thermal insulation & low thermal conductivity
  • High temperature resistance (up to 1600°C)
  • Lightweight, flexible, and easy to install
  • Resistant to thermal shock and chemical corrosion
  • Asbestos-free, non-toxic, & environmentally friendly
  • No binder burnout, extreme strength.

Applications

  • Industrial furnaces and kilns – Lining, insulation, and sealing
  • Petrochemical industry – Refractory linings, pipe insulation, and heat shields
  • Boilers and power plants – Insulation for turbines, exhaust ducts, and piping
  • Metal processing – Heat treatment insulation, aluminum processing, and foundry applications
  • Fire protection – Passive fireproofing and high-temperature gasketing
  • Aerospace and automotive – Heat shields, exhaust insulation, and engine compartment protection

Note : All data reflects typical results from standard tests performed under controlled conditions. This information is provided solely as a general reference for specifications and design estimates.