Engineering Cf/ZrB2-SiC-Y2O3 for Thermal Structures of Hypersonic Vehicles with Excellent Long-Term Ultrahigh Temperature Ablation Resistance

ADVANCED SCIENCE(2023)

引用 1|浏览4
暂无评分
摘要
Ultrahigh temperature ceramic matrix composites (UHTCMCs) are critical for the development of high Mach reusable hypersonic vehicles. Although various materials are utilized as the thermal components of hypersonic vehicles, it is still challenging to meet the ultrahigh temperature ablation-resistant and reusability. Herein, the Y2O3 reinforced C-f/ZrB2-SiC composites are designed, which demonstrates near-zero damage under long-term ablation at temperatures up to 2500 degree celsius for ten cycles. Notably, the linear ablation rate of the composites (0.33 mu m s(-1)) is over 24 times better than that of the conventional Cf/C-ZrC at 2500 degree celsius (8.0 mu m s(-1)). Moreover, the long-term multi-cycle ablation mechanisms of the composites are investigated with the assistance of DFT calculations. Especially, the size effect and the content of the Zr-based crystals in the oxide layer fundamentally affect the stability of the oxide layer and the ablation properties. The ideal component and structure of the oxide layer for multi-cycle ablation condition are put forward, which can be obtained by controlling the Y2O3/ZrB2 mole ratio and establishing Y-Si-O - t-Zr0.9Y0.1O1.95 core-shell nano structure. This work proposes a new strategy for improving the long-term multi-cycle ablation resistance of UHTCMCs.
更多
查看译文
关键词
Density functional theory calculations, long-term multi-cycle ablation, Ceramic matrix composites
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