Multifunctional Carbon Fiber Reinforced C/SiOC Aerogel Composites for Efficient Electromagnetic Wave Absorption, Thermal Insulation, and Flame Retardancy

Small (Weinheim an der Bergstrasse, Germany)(2023)

引用 0|浏览3
暂无评分
摘要
Carbon fiber composites have great application prospects as a potential electromagnetic (EM) wave-absorbing material, yet it remains extremely challenging to integrate multiple functions of EM wave absorption, mechanical strength, thermal insulation, and flame retardancy. Herein, a novel carbon fiber reinforced C/SiOC aerogel (CF/CS) composite is successfully prepared by sol-gel impregnation combined with an ambient drying process for the first time. The density of the obtained CF/CS composites can be controlled just by changing sol-gel impregnation cycles (original carbon fiber felt (S0), and samples with one (S1) and two (S2) impregnation cycles are 0.249, 0.324, and 0.402 g cm-3, respectively), allowing for efficient tuning of their properties. Remarkably, S2 displays excellent microwave absorption properties, with an optimal reflection loss of -65.45 dB, which is significantly improved than S0 (-10.90 dB). Simultaneously, compared with S0 (0.75 and 0.30 MPa in the x/y and z directions), the mechanical performance of S2 is dramatically improved with a maximum compressive strength of 10.37 and 4.93 MPa in the x/y and z directions, respectively. Moreover, CF/CS composites show superior thermal insulation capability than S0 and obtain good flame-retardant properties. This work provides valuable guidance and inspiration for the development of multifunctional EM wave absorbers. In this study, multifunctional carbon fiber-reinforced C/SiOC aerogel composites are prepared by a facile process for the first time. Remarkably, the optimal reflection loss reaches -65.45 dB with a maximum absorption bandwidth of 4.92 GHz. Simultaneously, the maximum compressive strength in x/y and z directions are 10.37 and 4.93 MPa. Moreover, excellent thermal insulation and flame-retardant properties are obtained.image
更多
查看译文
关键词
carbon fiber,C/SiOC aerogel,electromagnetic wave absorption,flame retardancy,mechanical performance,thermal insulation
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要