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首页> 外文期刊>Surface & Coatings Technology >Microstructure and oxidation behaviors of dense mullite-silicon carbide-silicon coating for graphite fabricated by dipping-pyrolysis and reactive infiltration
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Microstructure and oxidation behaviors of dense mullite-silicon carbide-silicon coating for graphite fabricated by dipping-pyrolysis and reactive infiltration

机译:用浸出 - 热解和反应性渗滤制造石墨致密莫来石碳化硅 - 硅涂层的微观结构和氧化行为

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摘要

A new-designed mullite-SiC-Si coating with dense structure for protecting graphite materials was prepared by dipping-pyrolysis combined with reactive infiltration. The phase synthesis, microstructure and anti-oxidation property of the fabricated mullite-SiC-Si coating were studied. Results demonstrated that the as-prepared coating exhibited excellent low and high temperature oxidation resistance, after isothermal oxidation at 900 degrees C and 1600 degrees C for 752 h and 550 h, respectively, the mass gains were 0.1% and 0.99%, respectively. The excellent anti oxidation performance was ascribed to the dense structure of coating and the formed glassy oxide layer on the coating surface. The oxidation process of mullite-SiC-Si coating was controlled by the diffusion of oxygen, and the as-prepared coating after oxidation was composed of oxide layer and dense mullite-SIC-Si layer. In contrast to SiC-Si coating, the high temperature stability of mullite-SiC-Si coating was greatly improved.
机译:通过浸入热解与反应性渗透结合制备具有用于保护石墨材料的致密结构的新设计的莫来石SiC-Si涂层。 研究了制造的莫来石 - SiC-Si涂层的相合成,微观结构和抗氧化性能。 结果证明,在900℃和1600℃的等温氧化后,752小时的等温氧化在900℃和550小时的等温氧化分别分别为0.1%和0.99%后,如制备的涂层出现优异的低和高温氧化性。 优异的抗氧化性能归因于涂层表面上的涂层的致密结构和形成的玻璃状氧化物层。 通过氧的扩散来控制莫来石-SiC-Si涂层的氧化过程,氧化后的制备涂层由氧化物层和致密的莫来石Si层组成。 与SiC-Si涂层相反,莫来石SiC-Si涂层的高温稳定性大大提高。

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