Ultralow shrinkage polyimide hybrid aerogel composite enhanced with organic fibers for thermal protection

Author:

Zhang Sizhao123ORCID,Liu Chun13,Wang Zhao13,Wang Jing13,Xu Guangyu13,Shi Hongwei1

Affiliation:

1. Thermal Control Technology Laboratory of Aircraft in Space Environment, Polymer Aerogels Research Center Jiangxi University of Science and Technology Nanchang Jiangxi China

2. Science and Technology on Advanced Ceramic Fibers and Composites Laboratory National University of Defense Technology Changsha Hunan China

3. Jiangxi Provincial Key Laboratory for Simulation and Modelling of Particulate Systems Nanchang Jiangxi China

Abstract

AbstractPolyimide (PI) aerogels possess a rather potential in thermal protection material for aircraft, owing to their low thermal conductivity, high thermal stability, and low bulk density. However, the large shrinkage of pure PI aerogels is still a challenge in the complete preparation process. Herein, a kind of PI hybrid aerogel composite was prepared successfully by introducing polyurethane fiber as the reinforcing agent. The aerogel composite could realize the enhancement for the pure PI aerogels from a micro/macroscopic perspective, ultimately ensuring the ultralow shrinkage rate of 3.52%. Due to the inhibition of the shrinkage characteristic, the aerogel composite obtained achieved excellent thermal insulation, especially retaining a low temperature of 40.7°C despite the hot surface temperature reached up to 150°C. Besides, the lightweight low‐density, exceptional flame resistance, and self‐extinguishing properties were reflected from PI hybrid aerogel composite constructed, including the outstanding hydrophobic feature (water contact angle of 120°). The PI hybrid aerogel composite as prepared may be used for the thermal management of aircraft in a great measure, illustrating the feasible strategy of fabricating PI‐based aerogel composites.

Funder

National Key Research and Development Program of China

Natural Science Foundation of Jiangxi Province

Publisher

Wiley

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