Ultra-Low Thermal Conductivity
The felt boasts a thermal conductivity as low as 0.018–0.020 W/m·K, ensuring exceptional heat insulation and energy efficiency. It is ideal for use in both high-temperature and cryogenic environments.
Pre-Oxidized PAN Fibers
Pre-oxidized PAN fibers offer inherent flame resistance, enhancing the material's safety for applications in fire-prone or high-temperature areas.
Lightweight and Flexible
Despite its advanced properties, the material is lightweight and extremely flexible. The 2mm thickness allows easy installation on complex or irregular surfaces, making it ideal for tight spaces and intricate geometries.

Applications
Aerospace and Aviation
Used as insulation for aircraft cabins, fuselages, and other components requiring lightweight yet high-performance thermal protection.
Industrial Equipment
Ideal for insulating high-temperature equipment, such as reactors, kilns, and pipelines, especially where space is limited.
Fireproofing Systems
Widely applied in fire-resistant structures, ensuring safety in buildings, vehicles, and industrial facilities.
Electronics
Used in electronic devices requiring thermal management to dissipate heat effectively without adding significant weight.
Energy Storage Systems
Provides thermal insulation for batteries, ensuring consistent performance and safety in electric vehicles and renewable energy systems.
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FAQ:
1. Why is the 2mm Pre-Oxidized PAN Fiber Aerogel Felt suitable for aerospace and aviation applications?
The felt is exceptionally lightweight and offers outstanding thermal insulation with a low thermal conductivity of 0.018–0.020 W/m·K. These properties make it ideal for aircraft cabins, fuselages, and other aviation components where reducing weight is critical for fuel efficiency while ensuring high-performance thermal protection. The material's flexibility also allows it to conform to complex shapes and surfaces commonly found in aerospace designs.
2. How does this product enhance the performance of high-temperature industrial equipment?
The felt is designed to withstand a wide range of temperatures, from -200°C to 650°C, making it suitable for reactors, kilns, and pipelines. Its compact 2mm thickness provides efficient insulation in space-constrained areas while reducing heat loss, improving energy efficiency, and protecting equipment from overheating. Its fire-resistant and durable properties also ensure long service life in harsh industrial conditions.
3. What benefits does the felt offer in fireproofing systems?
The pre-oxidized PAN fibers inherently resist flames and prevent the spread of fire, making the felt an excellent choice for fire-resistant structures. It is used in buildings, vehicles, and industrial facilities to enhance safety. Additionally, its flexibility and ease of installation allow it to be applied to irregular surfaces and structures without compromising its fireproofing capabilities.
4. Why is the felt ideal for thermal management in electronic devices?
In electronics, managing heat without adding significant weight or bulk is essential. The felt's lightweight and thin 2mm profile make it perfect for dissipating heat in compact electronic components. Its excellent thermal resistance ensures consistent performance, prevents overheating, and extends the lifespan of devices. Moreover, its water-resistant nature protects sensitive electronics from moisture-related issues.
5. How does the felt contribute to the safety and performance of energy storage systems?
Energy storage systems, such as batteries in electric vehicles and renewable energy solutions, generate heat during operation. The aerogel felt provides superior thermal insulation, maintaining stable operating temperatures and preventing thermal runaway-a critical safety feature. Its lightweight and flexible design ensure it fits snugly around batteries or other components, enhancing efficiency and safety without compromising mobility or energy density.
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