Aerogel Insulation Sheet Series
Category: Products
Product Details
Aerogel insulation sheets are manufactured by combining inorganic fiber felts with silica aerogel using a supercritical drying process, resulting in a lightweight, porous material with a three-dimensional network of nanoscale pores. They are applied either through membrane encapsulation or adhesive coating. The product exhibits a thermal conductivity at room temperature as low as 0.02 W/(m·K) or less.
Product Features:
High-efficiency thermal insulation and high compressibility; different series of substrates are tailored to various application scenarios.
Performance Comparison Table for C11S/C11P/C11R Aerogel Insulation Sheets
| Test Item | Unit | Inorganic Fiber Aerogel Insulation Sheet C11S | High-Temperature Aerogel Insulation Sheet C11P | Ultra-thin Aerogel Insulation Sheet C11R |
| Product thickness | mm | ≥1 | ≥1 | 0.5~1 |
| Core material density | kg/m³ | 170~350 | 350~450 | 170~300 |
| Thermal conductivity at 25°C | W/(m·K) | ≤0.022 | ≤0.022 | ≤0.022 |
| Flame retardant | / | UL94 V-0 | UL94 V-0 | UL94 V-0 |
| High-temperature resistant | °C | It can be adjusted between 300 and 1000 depending on the substrate. | >1000 | 650 |
| Product Features | - | Inorganic fiber substrates, with a variety of fiber types and customizable compression and fire‑resistance properties. | It maintains a low thermal conductivity at ultra-high temperatures of 1000°C, delivering excellent thermal insulation performance. | Made by combining fiberglass with aerogel, it boasts an ultra-thin profile—down to 0.5 mm—and exceptional thermal insulation performance. |
Keywords:Aerogel Insulation Sheet Series
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Aerogel Insulation Sheet Series
Aerogel insulation sheets are produced by combining inorganic fiber felts with silica aerogel via supercritical drying, resulting in a lightweight, porous material with a three-dimensional network of nanoscale pores. They are applied using membrane‑based encapsulation or adhesive coating. At room temperature, the product’s thermal conductivity is as low as 0.02 W/(m·K) or less.
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