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Effects of cation substitution and temperature on the interaction between thermal barrier oxides and molten CMAS

机译:阳离子取代和温度对热障氧化物与熔融CMAS之间相互作用的影响

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摘要

The effectiveness of candidate rare earth (RE) bearing oxides to mitigate degradation of thermal barrier coatings by molten silicates is determined by the constitution and crystallization kinetics of the reaction products. The relationships between the oxide composition, test temperature, and reaction product constitution were investigated using sintered pellets of hafnates or zirconates containing YbO1.5, GdO1.5, or LaO1.5. The results suggest that the composition of the reprecipitated ZrO2- or HfO2-based phase, typically fluorite, is a useful indicator of the effectiveness of the silicate crystallization reactions. Meanwhile, the composition of the primary crystalline reaction product, typically a RE oxy-apatite, is relatively insensitive to the experimental variables considered herein. The observed trends indicate that the larger RE cations are more potent in rapidly crystallizing the silicate melt and that their relative effectiveness increases with the REO1.5 concentration in the coating material. (C) 2014 Elsevier Ltd. All rights reserved.
机译:候选稀土(RE)氧化物减轻熔融硅酸盐对热障涂层降解的有效性取决于反应产物的组成和结晶动力学。使用包含YbO1.5,GdO1.5或LaO1.5的硼酸盐或锆酸盐的烧结颗粒,研究了氧化物组成,测试温度和反应产物组成之间的关系。结果表明,再沉淀的ZrO2-或HfO2基相(通常为萤石)的组成是硅酸盐结晶反应有效性的有用指标。同时,主要结晶反应产物(通常为RE氧基磷灰石)的组成对本文考虑的实验变量相对不敏感。观察到的趋势表明,较大的RE阳离子在快速结晶硅酸盐熔体方面更有效,并且它们的相对有效性随涂料中REO1.5浓度的增加而增加。 (C)2014 Elsevier Ltd.保留所有权利。

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