A layered aerogel composite with silica fibers, SiC nanowires, and silica aerogels ternary networks for thermal insulation at high-temperature

气凝胶 材料科学 复合材料 保温 热导率 热稳定性 复合数 纳米线 化学工程 纳米技术 图层(电子) 工程类
作者
Qiong Wu,Mengmeng Yang,Zhaofeng Chen,Le Trong Lu,Zhudan Ma,Yang Ding,Longpan Yin,Tianlong Liu,Manna Li,Lixia Yang,Bin Hou,Huanjun Zhu,Sheng Cui
出处
期刊:Journal of Materials Science & Technology [Elsevier BV]
卷期号:204: 71-80 被引量:11
标识
DOI:10.1016/j.jmst.2024.03.031
摘要

Due to excellent thermal insulation performance at room temperature and ultralow density, silica aerogels are candidates for thermal insulation. However, at high temperatures, the thermal insulation property of silica aerogels decreased greatly caused by transparency to heat radiation. Opacifiers introduced into silica sol can block heat radiation yet destroy the uniformity of aerogels. Herein, we designed and prepared a silica aerogel composite with oriented and layered silica fibers (SFs), SiC nanowires (SiCNWs), and silica aerogels, which were prepared by papermaking, chemical vapor infiltration (CVI), and sol-gel respectively. Firstly, oriented and layered SFs made still air a wall to block heat transfer by the solid phase. Secondly, SiCNWs were grown in situ on the surface of SFs evenly to weave into the network, and the network reduced the gaseous thermal conductivity by dividing cracks in SFs/SiCNWs/SA. Thirdly, SiCNWs weakened the heat transfer by radiation at high temperatures. Therefore, SFs/SiCNWs/SA presented remarkable thermal insulation (0.017 W (m K)–1 at 25 ℃, 0.0287 W (m K)–1 at 500 ℃, and 0.094 W (m K)–1 at 1000 ℃). Besides, SFs/SiCNWs/SA exhibited remarkable thermal stability (no size transform after being heat treated at 1000 ℃ for 1800 s) and tensile strength (0.75 MPa). These integrated properties made SFs/SiCNWs/SA a promising candidate for highly efficient thermal insulators.
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