Key materials for extreme high-temperature environments: Ultra-high-temperature ceramics and their composites
Yuxuan Liu, Hui Wang, Jianchao Hao, Yuan Cheng, Shun Dong, PingAn Hu, Wenbo Han, Xinghong Zhang
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摘要与影响
With the advancement of hypersonic vehicles, extreme high temperature environments have imposed increasingly stringent requirements on the performance of thermal protection systems. Consequently, the development of high-performance thermal protection materials capable of withstanding extreme conditions has become a primary focus of current research. Ultra-high temperature ceramics (UHTCs) and their composites, known for their excellent oxidation resistance and ablation performance, are regarded as highly promising non-ablative thermal protection materials. This paper provides a systematic review of recent research progress on UHTC composites in several key areas, including innovations and optimizations in fabrication processes, exploration of toughening strategies and mechanisms, in-depth studies on oxidation and ablation resistance mechanisms, and the development and potential applications of high-entropy ceramics. Furthermore, the paper discusses the practical application prospects of UHTCs and their composites in extreme environments, analyzes the current technical challenges, and proposes future research directions and priorities.
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材料 / 化学Advanced ceramic materials synthesis
Advanced materials and composites · Nuclear materials and radiation effects
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