首页> 外文期刊>Journal of Solid Mechanics and Materials Engineering >EBSD Observation of Micro Crack Morphologies after Thermal Exposure in Thermal Barrier Coatings
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EBSD Observation of Micro Crack Morphologies after Thermal Exposure in Thermal Barrier Coatings

机译:EBSD观察热障涂层热暴露后的微裂纹形态

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Micro-cracking process in TBCs(Thermal Barrier Coatings) due to thermal exposure was investigated using SEM(Scanning Electron Microscope) and EBSD(Electron BackScatter Diffraction) observation. Splat particle morphologies in TBCs were clearly visualized by IPF (Inverse Pole Figure) mapping. The splat structure of top coat was consisted with large granular particle region and cluster of small columnar particle region. Cracks were observed along the interfaces of large granular particle region and the cluster of small columnar particle region, along the interfaces among large granular particles and across the cluster of small columnar particles transgranularly perpendicular to columnar crystal growth direction. The onset time of extensive macro crack formation was corresponding to the Cr oxide growth at TGO(Thermally Grown Oxide) to some extent. Thus EBSD observation can be used as a powerful tool for crystallographic observation of TBC, associated with SEM and optical microscope observation.
机译:利用SEM(扫描电子显微镜)和EBSD(电子背向散射)观察了热暴露引起的TBC(热障涂层)中的微裂纹过程。通过IPF(反极图)作图可以清楚地看到TBC中的Splat颗粒形态。面漆的飞溅结构由大的颗粒区和小柱状区组成。沿大颗粒区域和小柱状区域的簇界面,沿大颗粒颗粒之间的界面以及横穿垂直于柱状晶体生长方向的小柱状颗粒簇观察到裂纹。大量宏观裂纹形成的开始时间在一定程度上与TGO(热生长氧化物)上的Cr氧化物生长相对应。因此,EBSD观察可以用作TBC的晶体学观察,SEM和光学显微镜观察的有力工具。

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