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Phase composition and microstructural responses of crystalline mullite/YSZ coating under water vapor environments

机译:水蒸气环境下结晶Mullite / YSZ涂层的相组合物和微观结构应答

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Mullite and mullite/ZrO_2 bi-layer systems are being considered as environment barrier coatings (EBCs) for protection of Si-based (Si_3N_4, SiC) substrates against water vapor corrosion for application in forthcoming turbine engines. An approach to reduce the thermal expansion mismatch between mullite and ZrO_2 layers in those coatings would be to tailor intermediate mullite/Y-ZrO_2 composite layers. The feasibility of these composite layers is studied in a comparative manner by plasma spraying both single mullite and bi-layer coatings of mullite and of mullite/ Y-ZrO_2 (75/25 vol %.) over Hexoloy SiC substrates. All feedstock materials are equally prepared using spray drying methods as the mix powders are not commercially available. Singular spraying conditions are used to assure enhanced crystallization of the mullite phase. Coatings are aged for 100 h at 1300 °C in a controlled water vapor environment. The effect of water corrosion on the exposed coatings is comparatively investigated, determining changes in crystalline phase by X-ray diffraction (XRD), the crystallization of amorphous phases is highlighted by the use of differential thermal analysis (DTA) tools and the microstructure of the polished coatings is analyzed by scanning electron microscopy (SEM).
机译:莫来石和莫来石/ ZrO_2双层系统被认为是用于保护Si的(Si_3N_4,SiC)基板的环境屏障涂层(EBCS),以在即将到来的涡轮发动机中应用水蒸气腐蚀。在这些涂层中减少莫来石和ZrO_2层之间的热膨胀失配的方法将是裁缝中间莫来石/ Y-ZRO_2复合层。通过等离子体喷涂莫来石和莫来钛矿和莫勒斯/ Y-ZrO_2(75/25体积%)的等离子体以比较方式研究了这些复合层的可行性。所有原料材料都是使用喷雾干燥方法同等制备,因为混合物粉末不可商购。奇异喷涂条件用于确保莫来石相的增强结晶。涂层在受控水蒸气环境中在1300℃下老化100小时。水腐蚀的在暴露的涂层效果比较研究,确定通过X射线衍射(XRD)中的结晶相的变化,非晶相的结晶是通过使用差示热分析的(DTA)的工具和的微结构突出通过扫描电子显微镜(SEM)分析抛光涂层。

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