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Effect Of Graded Interlayer On The Mode I Edge Delamination By Residual Stresses In Multilayer Coating-based Systems

机译:梯度涂层对多层涂层基体系中残余应力对模态边缘脱层的影响

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摘要

The mode I edge delamination could be initiated due to the presence of the interfacial peeling stresses near the edges of the multilayered systems due to the material mismatches between the adjacent layers. However, the exact peeling stress distributions could not be obtained by using the existing analytical and numerical models. It was proposed recently that the peeling moment resulting from the localized peeling stresses could be used to characterize mode I edge delamination. In this paper, the effect of the graded interlayer on the mode I edge delamination by thermal residual stresses in multilayer coating-based systems was investigated. Following the previous analysis approaches, the exact closed-form solutions for the peeling moments at individual interfaces and the curvatures for bilayer system, typical thermal barrier coating (TBC) system and TBC-based system with a graded interlayer inserted between the metallic layer and the ceramic layer were, respectively, derived. Case studies showed that the edge delamination by thermal stress could be impeded by properly selecting the coating materials and individual layer thicknesses. These studies may provide some important insights for developing fail-safe designing methodologies for multilayered systems.
机译:由于相邻层之间的材料不匹配,在多层系统的边缘附近存在界面剥离应力,因此可以引发I型边缘分层。但是,使用现有的分析模型和数值模型无法获得确切的剥离应力分布。最近提出,由局部剥离应力引起的剥离力矩可用于表征I型边缘分层。在本文中,研究了基于多层涂层的体系中梯度夹层对热残余应力引起的I型边缘分层的影响。根据先前的分析方法,针对双层系统,典型的热障涂层(TBC)系统和基于TBC的系统在各个界面处的剥离力矩和曲率的精确闭合形式解,在金属层和金属之间插入了渐变中间层分别得到陶瓷层。案例研究表明,通过适当选择涂层材料和各个层的厚度,可以防止热应力造成的边缘分层。这些研究可能为开发多层系统的故障安全设计方法提供一些重要的见识。

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