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Thermal conductivity and thermal cyclic fatigue of multilayered Gd2Zr2O7/YSZ thermal barrier coatings processed by suspension plasma spray

机译:悬浮等离子喷涂Gd2Zr2O7 / YSZ多层热障涂层的导热系数和热循环疲劳

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Rare earth zirconates have lower thermal conductivity, better phase stability, improved sintering resistance and CMAS (calcium magnesium alumino silicates) infiltration resistance than yttria stabilized zirconia (YSZ) at temperatures above 1200 degrees C. However, their lower fracture toughness and lower coefficient of thermal expansion (CTE) compared to YSZ lead to premature coating failure. In order to overcome these drawbacks at higher temperatures, a multilayered coating approach is attempted in this study and compared with the single layer YSZ Suspension plasma spray of single layer YSZ, single layer gadolinium zirconate (GZ) and double layer GZ/YSZ was carried out. Additionally, a triple layer coating system, with denser gadolinium zirconate on top of the GZ/YSZ system was sprayed to impart an added functionality of sealing the TBC from CMAS infiltration. Microstructural analysis was done using scanning electron microscopy and optical microscopy. Columnar microstructure with vertical cracks was observed. XRD analysis was used to identify phases formed in the as sprayed TBC samples. Porosity measurements were done using water impregnation method. Thermal diffusivity of single and multi-layered coatings was obtained by laser flash analysis and thermal conductivity of the coating systems was determined. It was found that the thermal conductivity of single layer gadolinium zirconate was lower than YSZ and that the thermal conductivity of multilayered systems were between their respective single layers. The single (YSZ), double (GZ/YSZ) and triple (GZ dense/GZ/YSZ) layer TBCs were subjected to thermal cyclic fatigue (TCF) test at 1100 degrees C and 1200 degrees C. It was observed that the single layer YSZ had lowest TCF life whereas the triple layer TBC had highest TCF life irrespective of test temperature. (C) 2015 Elsevier B.V. All rights reserved.
机译:与氧化钇稳定的氧化锆(YSZ)相比,稀土锆酸盐在1200摄氏度以上的温度下具有较低的热导率,更好的相稳定性,改善的耐烧结性和CMAS(钙镁铝硅酸钙)渗透性。与YSZ相比,膨胀(CTE)会导致涂层过早失效。为了克服高温下的这些缺点,本研究尝试了多层涂覆的方法,并与单层YSZ,单层锆Y(GZ)和双层GZ / YSZ的单层YSZ悬浮等离子喷涂进行了比较。 。另外,喷涂了三层涂层系统,在GZ / YSZ系统的顶部喷涂了致密的锆酸g,以增强密封TBC防止CMAS渗透的功能。使用扫描电子显微镜和光学显微镜进行显微结构分析。观察到具有垂直裂纹的柱状组织。 XRD分析用于鉴定在喷雾的TBC样品中形成的相。孔隙率的测量采用水浸渍法。通过激光闪光分析获得了单层和多层涂层的热扩散率,并确定了涂层系统的热导率。发现单层锆酸z的热导率低于YSZ,并且多层体系的热导率在它们各自的单层之间。对单层(YSZ),双层(GZ / YSZ)和三层(GZ致密/ GZ / YSZ)TBC在1100℃和1200℃下进行了热循环疲劳(TCF)测试。观察到单层与测试温度无关,YSZ的TCF寿命最低,而三层TBC的TCF寿命最高。 (C)2015 Elsevier B.V.保留所有权利。

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