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Simulation of the high temperature impression of thermal barrier coatings with columnar microstructure

机译:柱状微观结构热障涂层高温印模模拟

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摘要

The phenomena governing the durability of thermal barrier coatings (TBCs) are affected by their high temperature mechanical properties: especially the mechanisms of material removal upon particle impact. Some high temperature properties can be explored using an impression test described in a companion article. The utility of the test is contingent upon a method for deconvoluting aspects of the stress/strain response from load-displacement measurements. A numerical procedure having this attribute is described, and applied to TBCs with a columnar microstructure. The method elucidates the extent of the plastic deformation and densification as well as the column distortions caused by the impression. It is also capable of exploring the deformation heterogeneities observed experimentally, such as shear bands, by embodying salient constituent properties, such as the column width, contact friction, and inter-columnar friction. Comparisons with measurements provide some understanding of the plastic response of several thermal barrier systems.
机译:控制热障涂层 (TBC) 耐久性的现象受其高温机械性能的影响:尤其是颗粒撞击时材料去除的机制。可以使用配套文章中描述的印模测试来探索一些高温特性。该测试的实用性取决于一种从载荷-位移测量中对应力/应变响应的各个方面进行反卷积的方法。描述了具有此属性的数值过程,并将其应用于具有柱状微观结构的TBC。该方法阐明了塑性变形和致密化的程度以及由压印引起的柱变形。它还能够通过体现显着的组成特性(例如柱宽、接触摩擦和柱间摩擦)来探索实验中观察到的变形异质性,例如剪切带。通过与测量结果的比较,可以对几种热障系统的塑性响应有所了解。

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