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Double-layer oxidation protective SiC/Cr–Al–Si coating for carbon–carbon composites

机译:碳-碳复合材料的双层氧化保护性SiC / Cr-Al-Si涂层

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摘要

Double-layer oxidation resistant SiC/Cr–Al–Si coating for carbon–carbon composites was prepared by a two-step method of pack cementation and slurry. The phase composition, micro-structure and oxidation resistance of mono-layer SiC coating and double-layer SiC/Cr–Al–Si coating were studied by XRD, SEM, and isothermal oxidation test at 1773 K in air, respectively. Mono-layer SiC coating consists of SiC and Si, which can protect carbon–carbon composites for several hours depending on its thin thickness and porous structure. After adding outer Cr–Al–Si alloy coating, the as-prepared double-layer SiC/Cr–Al–Si coating with a dense surface and about 150 μm thickness showed improved oxidation resistance, which can protect carbon–carbon composites for 197 h with only 0.079 wt.% mass gain. The failure of the double-layer SiC/Cr–Al–Si coating is thought to occur due to the excessive depletion of the outer Cr–Al–Si alloy coating and the appearance of defects in the SiO2 glass layer.
机译:碳-碳复合材料的双层抗氧化SiC / Cr-Al-Si涂层是通过填充胶结和泥浆的两步法制备的。通过XRD,SEM和在1773 K的空气中等温氧化试验研究了单层SiC涂层和双层SiC / Cr-Al-Si涂层的相组成,微观结构和抗氧化性。单层SiC涂层由SiC和Si组成,根据其薄的厚度和多孔结构,它们可以保护碳-碳复合材料数小时。添加外部Cr-Al-Si合金涂层后,表面致密且厚度约150μm的双层SiC / Cr-Al-Si双层涂层表现出更高的抗氧化性,可以保护碳-碳复合材料达197小时仅有0.079 wt。%的质量增加。双层SiC / Cr-Al-Si涂层的失效被认为是由于外部Cr-Al-Si合金涂层的过度消耗以及SiO2玻璃层中出现缺陷所致。

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