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首页> 外文期刊>CERAMICS INTERNATIONAL >Microstructure and anti-ablation performance of HfC-TaC and HfC-ZrC coatings synthesized by CVD on C/C composites
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Microstructure and anti-ablation performance of HfC-TaC and HfC-ZrC coatings synthesized by CVD on C/C composites

机译:CVD在C / C复合材料上合成的HFC-TAC和HFC-ZRC涂层的微观结构和抗消融性能

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摘要

HfC-TaC and HfC-ZrC biphase coatings were synthesized on C/C composites through CVD technique with the aim of elevating the anti-ablation performance of the HfC monophase coating. The phase composition, microstructure and anti-ablation performance of the biphase coatings were researched, as well as the ablation mechanism of the coated C/C samples. Results manifested that both the HfC-TaC and HfC-ZrC coatings exhibited a compact and particle-stacked structure and combined well with the C/C substrate. Incorporating TaC is capable of enhancing the anti-ablation performance of the HfC coating by reason of forming the stable Hf6Ta2O17 phase during ablation. The evaporation and mechanical denudation of the Hf-Ta-O glassy film leaded to the HfC-TaC coating exfoliation. In comparison to the HfC and HfC-TaC coatings, the HfC-ZrC coating exhibited superior anti-ablation performance on account of the solid solution sintering between the HfO2 and ZrO2 particles and the good anti-scour performance of the oxide layer. After exposure to oxyacetylene torch for 120 s, the mass and linear ablation rates of the HfC-ZrC-coated C/C sample were only 0.63 mg/s and 0.21 mu m/s, respectively.
机译:通过CVD技术在C / C复合材料上合成HFC-TAC和HFC-ZRC双相涂层,其目的是提高HFC单相涂层的抗消融性能。研究了双相涂层的相组合物,微观结构和抗消融性能,以及涂覆的C / C样品的消融机制。结果表明,HFC-TAC和HFC-ZRC涂层两者都表现出紧凑且颗粒堆叠的结构,并与C / C底物合并良好。掺入TAC能够通过在消融期间形成稳定的HF6TA2O17相,通过在消融期间形成HFC涂层的抗消融性能。 HF-TA-O玻璃膜的蒸发和机械剥落引入HFC-TAC涂层剥离。与HFC和HFC-TAC涂层相比,HFC-ZRC涂层由于HFO 2和ZrO 2颗粒之间的固溶体烧结和氧化物层的良好抗擦洗性能而表现出优异的抗消融性能。暴露于氧乙炔炬进行120秒后,HFC-ZRC涂覆的C / C样品的质量和线性消融率分别仅为0.63mg / s和0.21μm/ s。

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