Zhang Xiang, Zhang Xueying, Wang Zhongyan, Xue Yunjia, Guo Anran, Yan Liwen, Hou Feng, Liu Jiachen
Key Lab of Advanced Ceramics and Machining Technology of Ministry of Education, School of Materials Science and Engineering, Tianjin University, Tianjin 300072, China.
Beijing Institute of Astronautical System Engineering, Beijing 100076, China.
Materials (Basel). 2024 Jul 1;17(13):3235. doi: 10.3390/ma17133235.
Mullite fiber felt is a promising material that may fulfill the demands of advanced flexible external thermal insulation blankets. However, research on the fabrication and performance of mullite fiber felt with high-temperature resistance and thermal stability is still lacking. In this work, mullite fibers were selected as raw materials for the fabrication of mullite fibrous porous materials with a three-dimensional net structure. Said materials' high-temperature resistance and thermal stability were investigated by assessing the effects of various heat treatment temperatures (1100 °C, 1300 °C, and 1500 °C) on the phase composition, microstructure, and performance of their products. When the heat treatment temperature was below 1300 °C, both the phase compositions and microstructures of products exhibited stability. The compressive rebound rate of the product before and after 1100 °C reached 92.9% and 84.5%, respectively. The backside temperature of the as-prepared products was 361.6 °C when tested at 1500 °C for 4000 s. The as-prepared mullite fibrous porous materials demonstrated excellent high-temperature resistance, thermal stability, thermal insulation performance, and compressive rebound capacity, thereby indicating the great potential of the as-prepared mullite fibrous porous materials in the form of mullite fiber felt within advanced flexible external thermal insulation blankets.
莫来石纤维毡是一种很有前途的材料,有望满足先进柔性外部隔热毯的需求。然而,目前仍缺乏关于具有耐高温性和热稳定性的莫来石纤维毡的制备及性能的研究。在本工作中,选用莫来石纤维作为原料来制备具有三维网状结构的莫来石纤维多孔材料。通过评估不同热处理温度(1100℃、1300℃和1500℃)对其产物的相组成、微观结构和性能的影响,研究了上述材料的耐高温性和热稳定性。当热处理温度低于1300℃时,产物的相组成和微观结构均表现出稳定性。1100℃处理前后产物的抗压回弹率分别达到92.9%和84.5%。在1500℃下测试4000 s时,所制备产物的背面温度为361.6℃。所制备的莫来石纤维多孔材料表现出优异的耐高温性、热稳定性隔热性能和抗压回弹能力,从而表明所制备的呈莫来石纤维毡形式的莫来石纤维多孔材料在先进柔性外部隔热毯方面具有巨大潜力。