首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Failure analysis of Gd2Zr2O7/YSZ multi-layered thermal barrier coatings subjected to thermal cyclic fatigue
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Failure analysis of Gd2Zr2O7/YSZ multi-layered thermal barrier coatings subjected to thermal cyclic fatigue

机译:Gd2Zr2O7 / YSZ多层热障涂层热循环疲劳失效分析

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摘要

8 wt.% yttria stabilized zirconia (8YSZ) is the standard ceramic top coat material used in thermal barrier coatings (TBCs) due to its excellent thermo-physical and thermo-mechanical properties. However, above 1200 degrees C, YSZ has issues such as susceptibility to CMAS (Calcium Magnesium Alumino Silicates) attack and enhanced sintering which could lead to catastrophic failure of the TBC. Pyrochlores of rare earth zirconate composition such as gadolinium zirconate have shown to be resistant to CMAS attack and at the same time possess several other attractive properties. However, poor thermal cycling life of single layer gadolinium zirconate (GZ) TBC compared to single layer YSZ has been reported. Therefore, a double layered GZ/YSZ TBC with YSZ as the intermediate coating and GZ as the top coat and a single layer 8YSZ were deposited by the axial suspension plasma spray process. Additionally, a triple layer TBC (GZdense/GZ/YSZ) comprising of denser GZ coating on top of GZ/YSZ TBC was deposited. SEM analysis revealed a columnar microstructure in the single, double and triple layer TBCs. XRD analysis confirmed the presence of tetragonal prime and defect fluorite phases in the top surface of YSZ and GZ based as sprayed TBCs respectively. The single layer YSZ and GZ/YSZ multi-layered TBCs were subjected to thermal cyclic fatigue (TCF) testing at 1100 degrees C and 1200 degrees C. The triple layer TBC showed a higher thermal cyclic life at both the temperatures compared to the single and double layer TBCs. The failed TBCs at 1100 degrees C were analyzed by SEM/EDS and image analysis. It was found that the failure modes in single layer YSZ and GZ based TBCs were different. (C) 2016 Elsevier B.V. All rights reserved.
机译:8重量%的氧化钇稳定的氧化锆(8YSZ)是热障涂层(TBC)中使用的标准陶瓷面涂层材料,因为它具有出色的热物理和热机械性能。但是,在1200摄氏度以上,YSZ存在诸如易受CMAS(钙铝硅酸钙)侵蚀和增强烧结的问题,这可能导致TBC的灾难性故障。稀土锆酸盐组成的烧绿石,例如锆酸g已显示出对CMAS的抵抗力,同时还具有其他一些吸引人的特性。然而,与单层YSZ相比,单层锆酸((GZ)TBC的热循环寿命较差。因此,通过轴向悬浮等离子体喷涂工艺沉积了以YSZ作为中间涂层和GZ作为面涂层的双层GZ / YSZ TBC和单层8YSZ。另外,沉积三层TBC(GZdense / GZ / YSZ),该三层TBC包括在GZ / YSZ TBC顶部的较密的GZ涂层。 SEM分析显示单层,双层和三层TBC中的柱状微观结构。 XRD分析证实YSZ和GZ的顶表面分别以喷涂TBCs的形式存在四方质的萤石相和有缺陷的萤石相。单层YSZ和GZ / YSZ多层TBC在1100摄氏度和1200摄氏度下进行了热循环疲劳(TCF)测试。三层TBC在两个温度下均显示出比单层和双层更高的热循环寿命。双层TBC。通过SEM / EDS和图像分析来分析在1100℃下失效的TBC。发现基于YSZ和GZ的单层TBC的失效模式是不同的。 (C)2016 Elsevier B.V.保留所有权利。

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