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首页> 外文期刊>Journal of the European Ceramic Society >Stability of ultra-high-temperature ZrB_2-SiC ceramics under simulated atmospheric re-entry conditions
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Stability of ultra-high-temperature ZrB_2-SiC ceramics under simulated atmospheric re-entry conditions

机译:模拟大气再进入条件下超高温ZrB_2-SiC陶瓷的稳定性

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摘要

Microstructure modifications of an ultra-high temperature ZrB_2-SiC ceramic exposed to ground simulated atmospheric re-entry conditions were investigated and discussed. Fluid dynamic numerical calculations were carried out to correlate and explain the experimental results. The cross-sectioning of the ceramic models after exposure (examined by SEM) showed a compact scale of zirconia (20 mu m thick) underlying an external silica thin coating. A partially SiC-depleted region, a few microns thick, underneath the zirconia sub-scale was also seen. The post-test analyses confirmed the potential of the ZrB_2-SiC composite to endure re-entry conditions with temperature approaching 2000 deg C, thanks to the formation of a steady-state external multiphase oxide scale. Numerical calculations, which simulated the chemical non-equilibrium flow around the ceramic model, matched well the experimental results only assuming a very low catalytic surface behavior.
机译:研究并讨论了暴露于地面模拟大气再进入条件下的超高温ZrB_2-SiC陶瓷的微观结构改性。进行流体动力学数值计算以关联和解释实验结果。曝光后陶瓷模型的横截面(通过SEM检查)显示在外部二氧化硅薄涂层下面的氧化锆的致密鳞片(20微米厚)。还可以看到氧化锆亚标度以下的部分SiC耗尽区(几微米厚)。测试后的分析证实了ZrB_2-SiC复合材料在形成稳态外部多相氧化物水垢的过程中具有承受温度接近2000摄氏度的重入条件的潜力。数值计算模拟了陶瓷模型周围的化学非平衡流动,仅在假定非常低的催化表面行为的情况下才能很好地与实验结果匹配。

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