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首页> 外文期刊>Ceramic Engineering and Science Proceedings >ON THE THERMAL CYCLING AND EVOLUTION OF SURFACE MORPHOLOGY FOR THERMALLY CYCLED NiCoCrAlY BONDCOATS
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ON THE THERMAL CYCLING AND EVOLUTION OF SURFACE MORPHOLOGY FOR THERMALLY CYCLED NiCoCrAlY BONDCOATS

机译:热循环NiCoCrAlY粘结剂的热循环和表面形貌演化

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摘要

Morphological instabilities such as rumpling and ratcheting on bond coat surfaces in thermal barrier coatings (TBCs) have recently received significant attention since these phenomena can be directly linked to system failures. Recent observations from thermo-mechanically cycled TBC-samples reveal that, if the ceramic top coat has spalled, the morphological evolution of a NiCoCrAlY bond coat can be linked to the presence or absence of a thermal gradient over the coating. Morphological instabilities develop during cycling with a thermal gradient while the surface remains smooth for cyclic conditions without a gradient. This paper discusses an initial numerical model to simulate this behavior, lending itself to some insight in the thermo-mechanical response. In particular, it is shown that not only is the thermal gradient important, but the relative rate between the inside and outside heating/cooling sequence plays a significant role in driving the morphological instabilities.
机译:形态不稳定性,例如热障涂层(TBC)中粘合涂层表面的起皱和棘齿,已经引起了广泛的关注,因为这些现象可以直接与系统故障相关。从热机械循环的TBC样品中获得的最新观察结果表明,如果陶瓷面涂层剥落,则NiCoCrAlY粘结涂层的形貌演变可能与涂层上是否存在热梯度有关。在热梯度作用下循环过程中会出现形貌不稳定性,而在没有梯度的循环条件下,表面保持光滑。本文讨论了模拟此行为的初始数值模型,从而使自己对热机械响应有了一些了解。特别地,表明不仅热梯度重要,而且内部和外部加热/冷却序列之间的相对速率在驱动形态不稳定性中起重要作用。

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