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Microstructure Observation and Nanoindentation Size Effect Characterization for Micron-/Nano-Grain TBCs

机译:微观结构观察和纳米纹尺寸效应特征对微米/纳米粒TBCs的特征

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Microstructure observation and mechanical properties characterization for micron-/nano-grain thermal barrier coatings were investigated in this article. Scanning electron microscope images demonstrated that both micron-grain coating and nano-grain coating had micrometer-sized columnar grain structures; while the nano-grain coating had the initial nanostructures of the agglomerated powders reserved by the unmelted particles. The mechanical properties (hardness and modulus) of micron-/nano-grain coatings were characterized by using nanoindentation tests. The measurements indicated that the nano-grain coating possessed larger hardness and modulus than the micron-grain coating; which was related to the microstructure of coatings. Nanoindentation tests showed that the measured hardness increased strongly with the indent depth decreasing; which was frequently referred to as the size effect. The nanoindentation size effect of hardness for micron-/nano-grain coatings was effectively described by using the trans-scale mechanics theory. The modeling predictions were consistent with experimental measurements; keeping a reasonable selection of the material parameters.
机译:本文研究了微观结构观察和微米/纳米粒热阻挡涂层的表征。扫描电子显微镜图像显示微米晶粒涂层和纳米粒涂层具有千分尺寸柱状晶粒结构;虽然纳米籽粒涂层具有由未熔化的颗粒保留的附聚粉末的初始纳米结构。通过使用纳米凸缘试验,表征了微米/纳米籽粒涂层的机械性能(硬度和模量)。测量结果表明,纳米粒涂层比微米籽粒涂层具有较大的硬度和模量;这与涂层的微观结构有关。纳米肾脏测试表明,测量的硬度随着凹痕深度的减小而强烈增加;这经常被称为尺寸效应。通过使用跨尺度力学理论有效地描述了微米/纳米籽粒涂层硬度的纳米indentation尺寸效应。建模预测与实验测量一致;保持合理选择的材料参数。

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