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Aerogel Felt/Nano Aerogel Insulation Blanket

• Density: 180-200 kg/m³
• Raw Material: Aerogel And Fiber Materials
• Thickness: 3mm/6mm/10mm
• Asbestos Content: 100% Asbestos-Free
• Working temperature: -200℃~650℃
• Function: Thermal insulation

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Product Introduction

Aerogel felt is a felt-like material made from aerogel as the raw material. Aerogel is a porous material with extremely low density, high porosity, and high specific surface area, typically made from silica or other materials. Aerogel felt is characterized by its lightweight, softness, thermal insulation, and sound absorption properties, and it is widely used in applications such as building insulation, acoustic insulation, aerospace technology, and electronics. Its excellent thermal insulation performance and lightweight nature make it an ideal choice for various applications.

Feature:

  • The lightest solid material known.
  • Exceptionally low thermal conductivity.
  • High specific surface area.
  • Possesses heat insulation, hydrophobic, shockproof, sound insulation, and transparency properties. Exhibits no decomposition at high temperatures and releases no harmful gases, earning it the designation of a super thermal insulation material.

Application:

  • Thermal insulation in buildings and industrial equipment.
  • Sound absorption in architectural and automotive interiors.
  • Impact cushioning in packaging and protective gear.
  • Hydrophobic coatings for waterproofing.
  • Optical components for clarity.
  • Aerospace engineering for lightweight structures.
  • Medical devices for wound dressings.
  • Energy storage in batteries.
  • Environmental remediation for oil spills.
  • Sporting goods for enhanced performance.

Technical Data:

Item parameter Test Methods
density 200+20kg/m3 GB/T 5480
Dimensional stability 1% GB/T 8811
Hydrophobicity 99.80% GB/T 10299
Thermal load shrinkage temperature 800°C GB/T 11835
Compressive strength 10% 60KPa 20% 120KPa GB/T 13480
Combustion level Class A 1400KPa GB/T 8624
Tensile Strength 1400KPa GB/T 17911
Thermal conductivity
(average temperature)
25°C 0.018 W/(m·K) GB/T 10295
100°C 0.020 W/(m·K)
200°C 0.024 W/(m·K)
300°C 0.032 W/(m·K)
400°C 0.042 W/(m·K)
500°C 0.051 W/(m·K)
650°C 0.062 W/(m·K)
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