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首页> 外文期刊>Journal of Thermal Spray Technology >Thermal Cycling and High-Temperature Corrosion Tests of Rare Earth Silicate Environmental Barrier Coatings
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Thermal Cycling and High-Temperature Corrosion Tests of Rare Earth Silicate Environmental Barrier Coatings

机译:稀土硅酸盐环境屏障涂层的热循环和高温腐蚀试验

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Lutetium and yttrium silicates, enriched with an additional secondary zirconia phase, environmental barrier coatings were synthesized by the solution precursor plasma spraying process on silicon carbide substrates. A custom-made oven was designed for thermal cycling and water vapor corrosion testing. The oven can test four specimens simultaneously and allows to evaluate environmental barrier performances under similar corrosion kinetics compared to turbine engines. Coatings structural evolution has been observed by SEM on the polished cross sections, and phase composition has been analyzed by XRD. All coatings have been thermally cycled between 1300 A degrees C and the ambient temperature, without spallation, due to their porosity and the presence of additional secondary phase which increases the thermal cycling resistance. During water vapor exposure at 1200 A degrees C, rare earth disilicates showed a good stability, which is contradictory with the literature, due to impurities-such as Si- and Al-hydroxides-in the water vapor jets. The presence of vertical cracks allowed the water vapor to reach the substrate and then to corrode it. It has been observed that thin vertical cracks induced some spallation after 24 h of corrosion.
机译:通过碳化硅基材上的溶液前体等离子体喷涂工艺合成富含额外的仲氧化锆阶段,富含额外的仲氧化锆阶段的乳酸酯和钇硅酸盐。设计了一种定制的烤箱,用于热循环和水蒸气腐蚀测试。与涡轮发动机相比,烤箱可以同时测试四个标本,并允许在类似的腐蚀动力学下评估环境屏障性能。通过SEM在抛光横截面上观察到涂层结构进化,并通过XRD分析相组合物。由于它们的孔隙率和存在增加热循环电阻的额外二次相,所有涂层在1300℃和环境温度之间的热循环,而无需介于脱落。在1200℃下的水蒸气暴露过程中,稀土化机显示出良好的稳定性,这与文献相互矛盾,由于杂质 - 例如Si-和Al-氢氧化物 - 在水蒸气喷射中。垂直裂缝的存在允许水蒸气到达基板,然后腐蚀。已经观察到薄的垂直裂缝在24小时后诱导一些椎间体腐蚀。

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