Plasma torch ablation performance of Ta0.8Hf0.2C-SiC gradient coating fabricated by LPPS and pack cementation for C/C composites

Shao Pu Liu, Zhuang Ma*, Yanbo Liu, Xinchun Tian, Shizhen Zhu, Ling Liu, Zhaowei Pan, Zhuohang Xie, Yaxin Wang

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

The Ta0.8Hf0.2C solid solution inherits the outstanding oxidation and ablation resistance of both TaC and HfC, making it a promising material for ultra-high-temperature applications. In this work, a Ta0.8Hf0.2C-SiC gradient coating was fabricated on carbon/carbon (C/C) composites via pack cementation followed by low-pressure plasma spraying (LPPS). The resulting gradient coating exhibited outstanding ablation resistance under a plasma heat flux of 13 MW/m2, withstanding a peak surface temperature of 2670 ℃. Such outstanding ablation resistance is attributed to a combination of synergistic mechanisms, including: heat dissipation through the volatilization of Ta2O5 and SiO2; defect sealing by a low-vapor-pressure Ta–Hf–Si–O glassy phase; structural anchoring by the high-melting Hf6Ta2O17 skeleton; and the gradient distribution of Ta0.8Hf0.2C and SiC, which effectively mitigates thermal stress. This study provides a viable strategy for developing high-performance thermal protection coatings for hypersonic and re-entry aerospace applications.

源语言英语
文章编号117792
期刊Journal of the European Ceramic Society
46
2
DOI
出版状态已出版 - 2月 2026

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