Multiphysics modeling for local structural heat source and high-speed airflow coupled ablation behavior of the lightweight quartz fiber-reinforced phenolic (LQFRP) composite

Author:

Yan Xiaojie,Wang Hebing,Pan Yiwu,Fan Jiahui,Fan Zhaolin,Zhang Xinghong,Hong ChangqingORCID

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Reference38 articles.

1. Cheng HM, Fan ZH, Hong CQ et al (2021) Lightweight multiscale hybrid carbon-quartz fiber fabric reinforced phenolic-silica aerogel nanocomposite for high temperature thermal protection. Compos Part A-Appl S 106313:1–9

2. Jin XY, Liu C, Huang H et al (2022) Multiscale, elastic, and low-density carbon fibre / siliconoxycarbide-phenolic interpenetrating aerogel nanocomposite for ablative thermal protection. Compos Part B-Eng 110212:1–11

3. Huang H, Lv YH, Jin XY et al (2023) Bifunctional silicone triggered long-range crosslinking phenolic aerogels with flexibility and thermal insulation for thermal regulation. Chem Eng J 144413:1–11

4. Huang H, Yan XJ, Jin XY et al (2023) Flexible and interlocked quartz fibre reinforced dual polyimide network for high-temperature thermal protection. J Mater Chem A 11:9931–9941

5. Wang Y, Liu PF, Wang H et al (2023) Mesoscopic visualization of pyrolysis process in silica fiber phenolic composites. Int Commun Heat Mass 106895:1–13

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