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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Oxidation and ablation resistant properties of pack-siliconized Si-C protective coating for carbon/carbon composites
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Oxidation and ablation resistant properties of pack-siliconized Si-C protective coating for carbon/carbon composites

机译:碳/碳复合材料包装 - 硅化Si-C保护涂层的氧化和消融抗性性能

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Uniformly SiC coating was established on carbon/carbon (C/C) composites using halide activated pack cementation (HAPC). The siliconizing temperature in HAPC process played an evident effect on the deposition efficiency and oxidation behavior of SiC coating. The SiC coating revealed a typical crystalline structure with limited porosity and combined well with the substrate. Oxidation tests showed that the coating can withstand the 25 h of continuous isothermal oxidation at 1773 K and 10 thermal cycles between 1773 K and room temperature due to the good self-healing ability of formed glassy SiO2 scale. An oxyacetylene flame test demonstrated that the SiC coating can effectively protect C/C composites from ablation for 45 s. The ablation central region presented a discontinuous and damaged morphology due to the volatilization of oxides and thermos-mechanical denudation, while a continuous glassy SiO2 layer as the primary ablation barrier availably prevented the transitional region from being heavily oxidized. (C) 2018 Elsevier B.V. All rights reserved.
机译:使用卤化物活性包装胶结(HAPC)在碳/碳(C / C)复合材料上建立均匀的SiC涂层。 HAPC过程中的硅化温度对SiC涂层的沉积效率和氧化行为起显着作用。 SiC涂层揭示了一种典型的晶体结构,孔隙率有限,与基材合并良好。氧化试验表明,由于形成的玻璃状SiO2标度的良好自我愈合能力,涂层可以承受1773k和10个热循环的连续等温氧化在1773k和10个热循环中。氧乙炔火焰试验证明了SiC涂层可以有效地保护C / C复合材料从消融45秒。由于氧化物的挥发和热弹性剥落,消融中心区域呈现了不连续和受损的形态,而作为初级消融屏障的连续玻璃SiO2层可用地防止过渡区域严重氧化。 (c)2018年elestvier b.v.保留所有权利。

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