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首页> 外文期刊>CERAMICS INTERNATIONAL >On the role of TGO growth in the interface undulation in MCrAlY coating system upon thermal cycling
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On the role of TGO growth in the interface undulation in MCrAlY coating system upon thermal cycling

机译:关于TGA生长在热循环后麦克莱达涂料系统界面波动中的作用

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The bond-coat/TGO (thermally grown oxide) interface has been experimentally observed to progressively undulate upon thermal cycling. This work presents a study on the role of TGO growth in the interface undulation. An axisymmetric finite element model was built based on the ratcheting phenomenon. It is found that the interface undulation is associated with not only the compressive stresses in the TGO but also the softness of the bond-coat. The compressive stresses provide the driving force for the interface undulation. At high temperature lengthening TGO growth is responsible for the compressive stresses and therefore plays a crucial role in the interface undulation. The bond-coat needs to be soft enough to accommodate the interface undulation. Thickening TGO growth itself almost has no effect on the interface undulation, but the variation of TGO thickness appears to affect the sensitivity of the interface undulation to the lengthening strain rate of TGO growth.
机译:已经通过实验观察到粘合剂/ TGO(热生长氧化物)界面在热循环时逐渐波动。 这项工作提出了对TGO增长在界面波动中的作用的研究。 基于棘轮现象构建轴对称有限元模型。 发现界面波动不仅与TGA中的压缩应力不仅具有粘合剂涂层的柔软性。 压缩应力为界面波动提供驱动力。 在高温高温下,TGO生长负责压缩应力,因此在界面波动中起着至关重要的作用。 粘合涂层需要足够柔软以适应界面波动。 增厚TGO生长本身几乎对界面波动几乎没有影响,但TGO厚度的变化似乎影响了界面波动对TGA的延长应变率的敏感性。

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