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Experimental and Simulation Analysis of the Evolution of Residual Stress Due to Expansion via CMAS Infiltration in Thermal Barrier Coatings

机译:通过CMAS浸润在热阻挡涂层中膨胀引起的剩余应力演化的实验和模拟分析

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The failure behavior of thermal barrier coatings (TBCs) involves multilayered systems infiltrated with calcium–magnesium–alumino-silicates (CMAS). The metastable tetragonal phase is mainly composed of 7YSZ (7 mol.% Y2O3-stabilized ZrO2), and it destabilizes into the Y-lean tetragonal phase, which may be induced by CMAS infiltration, and transforms into a monoclinic phase during cooling. The phase transformation leads to volume expansion around the CMAS-rich layer. Furthermore, it is shown that the spalling of the coating system emerges when the surface of the coating system is subjected to significant residual stress. In this study, a double-cantilever beam model is established to describe the macroscopic phenomenon of thermal buckling induced via CMAS. The result of the buckle height is used to demonstrate the consistency of the experiment and finite element simulation. The experimental parameters are imported into a multilayer cantilever beam model to analyze the interfacial stresses due to CMAS infiltration. The finite element results indicate that the phase transformation leads to damage in the coating system wherein the interfacial stresses due to phase transformation are 27% higher than those in the model without phase transformation.
机译:热阻挡涂层(TBCS)的失效行为涉及用钙镁 - 铝硅酸盐(CMAS)渗透的多层系统。亚稳四方相主要由7YSZ(7mol.%Y2O3稳定的ZrO 2)组成,并且它变得稳定进入Y-贫四方相,这可以通过CMAS渗透诱导,并在冷却期间转化为单硅酸盐。相变导致CMAS的层周围的体积膨胀。此外,显示涂层系统的剥落在涂层系统的表面受到显着的残余应力时出现。在该研究中,建立了双悬臂梁模型来描述通过CMAS引起的热屈曲的宏观现象。带扣高度的结果用于展示实验和有限元模拟的一致性。实验参数进口到多层悬臂梁模型中,以分析由于CMAS渗透而导致的界面应力。有限元结果表明相变导致涂层系统中的损坏,其中由于相变由于没有相变的模型中的界面应力高27%。

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