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Thermal Cycling Behavior of Air Plasma-Sprayed and Low-Pressure Plasma-Sprayed Environmental Barrier Coatings

机译:空气等离子体喷涂和低压等离子体喷涂环境屏障涂层的热循环行为

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Yb2Si2O7/Si environmental barrier coatings (EBCs) were produced by air plasma spray (APS) and low-pressure plasma spray (LPPS) processes. The phase composition, microstructure, and bonding strength of APS and LPPS EBCs were investigated. Thermal cycling tests were performed in air and in steam atmosphere respectively at 1316 °C for both APS and LPPS EBCs. There is no coating failure in air atmosphere for both APS and LPPS EBCs after 900 cycles. In contrast, APS EBCs have an average life of 576 cycles in a steam cycling test in 90% H2O 10% air at 1316 °C while LPPS EBCs survived 1000 cycles without failure. The superior durability of the LPPS EBCs compared to APS EBCs in the same steam cycling environment is attributed to the significantly reduced thermally grown oxide (TGO) growth rate because of the denser and crack-free microstructure, higher bonding strength, and reduced coefficient of thermal expansion (CTE) mismatch (less Yb2SiO5 phase) in the LPPS Yb2Si2O7/Si EBCs.
机译:YB2SI2O7 / SI环境屏障涂层(EBCS)由空气等离子体喷雾(APS)和低压等离子体喷雾(LPPS)工艺生产。 研究了APS和LPPS EBC的相组合物,微观结构和粘合强度。 热循环试验分别在1316℃下在空气和蒸汽气氛中进行,用于AP和LPPS EBC。 在900次循环后AP和LPPS EBC的空气气氛中没有涂层失效。 相反,APS EBC在1316℃下在90%H 2 O 10%空气中的蒸汽循环试验中的平均寿命为576次循环,而LPPS EBCs在没有发生故障的情况下存活1000个循环。 与APS EBC相同的蒸汽循环环境相比,LPPS EBC的优异耐用性归因于由于更密集和无裂缝的微观结构,更高的粘接强度和降低的热量的热生长氧化物(TGO)生长速率而归因于显着降低的热生长氧化物(TGO)生长速率 LPPS YB2SI2O7 / Si EBC中的扩展(CTE)不匹配(少YB2SIO5相)。

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