High-Performance Silica Aerogel Insulation Blanket

Overview

Engineered with a premium fiberglass or high-silica fiber matrix, our silica aerogel insulation blanket features an precisely controlled microstructure and density. This advanced formulation delivers the ultimate dual-performance: ultra-low thermal conductivity combined with extreme high-temperature resistance. It is the ideal thermal management solution for thermal pipelines, petrochemical networks, equipment cabins, and energy-saving architectural structures.

Core Advantages

  • Superior Insulation: Exceptional thermal resistance to drastically reduce energy loss.

  • Moisture & Water Resistant: Outstanding hydrophobicity ensures long-term structural integrity in damp environments.

  • Maximum Fire Safety: Rated Class A for fire resistance (non-combustible).

  • Eco-Friendly & Durable: 100% non-toxic formulation with an extended operational lifespan.

Breakthrough Performance

As a testament to our continuous R&D, our newly developed next-generation aerogel blanket significantly outperforms conventional materials. While fully complying with the rigorous GB/T34336-2017 standard, it achieves a 20% reduction in high-temperature thermal conductivity compared to standard Type III Class A products. This guarantees unparalleled insulation efficiency in extreme high-temperature environments.

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performance

parameter

YYZ-650

YYZ-650H

YYZ-800

YYZ-800H

Bulk Density

≤0.21 g/cm³

≤0.23 g/cm³

Available Thickness

3 mm, 6 mm and 10 mm

Color

White

Gray

White

Gray

Maximum Service

Temperature

650 ℃ (1202 °F)

800 ℃ (1472 °F)

Thermal

Conductivity@25 ℃

≤0.021 W/(m·K)

≤0.025

W/(m·K)

≤0.023

W/(m·K)

Thermal

Conductivity@300 ℃

≤0.036

W/(m·K)

≤0.030

W/(m·K)

≤0.036

W/(m·K)

≤0.030

W/(m·K)

Thermal

Conductivity@500 ℃

≤0.072

W/(m·K)

≤0.050

W/(m·K)

≤0.072

W/(m·K)

≤0.055

W/(m·K)

Fire Performance

Class A(A2) (Non-combustible)

Hydrophobic Rate

≥98.0%

Moisture Absorption

≤5.0%

Tenslie Strength

Horizontal: ≥1500 kPa, Vertical: ≥500 kPa