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Effects of three-dimensional coating interfaces on thermo-mechanical stresses within plasma spray thermal barrier coatings

机译:三维涂层界面对等离子喷涂热障涂层内热机械应力的影响

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摘要

It has been acknowledged that stresses within a thermal barrier coating (TBC) and its durability are significantly affected by the coating interfaces. This paper presents a finite element approach for stress analysis of the plasma sprayed TBC system, using three-dimensional (3D) coating interfaces. 3D co-ordinates of the coating surfaces were measured through 3D reconstruction of scanning electron microscope (SEM) images. These co-ordinates were post processed to reconstruct finite element models for use in stress analyses. A surface profile unit cell approach with appropriate boundary conditions was applied to reduce the problem size and hence computation time. It has been shown that for an identical aspect ratio of the coating interface, interfacial out-of-plane stresses for 3D models are around twice the values predicted using 2D models. Based on predicted stress development within the systems, possible crack development and failure mechanisms of the TBC systems can be predicted.
机译:已经认识到,热障涂层(TBC)内的应力及其耐久性受到涂层界面的显着影响。本文提出了一种使用三维(3D)涂层界面对等离子喷涂TBC系统进行应力分析的有限元方法。通过扫描电子显微镜(SEM)图像的3D重建来测量涂层表面的3D坐标。对这些坐标进行后期处理,以重建用于应力分析的有限元模型。使用具有适当边界条件的表面轮廓单位晶胞方法来减小问题的大小,从而减少计算时间。已经表明,对于相同的涂层界面长宽比,3D模型的界面平面外应力约为使用2D模型预测的值的两倍。基于系统内预计的应力发展,可以预测TBC系统可能的裂纹发展和破坏机理。

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