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Cracking in coating-substrate composites with multi-layered and FGM coatings

机译:多层和FGM涂层的涂料-基材复合材料的开裂

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摘要

This investigation evaluates, by finite element method, the stress intensity factors (SIF) of cracked multi-layered and functionally graded material (FGM) coatings of a coating-substrate composite, due to the action of uniform normal stress on the crack surfaces. The substrate is assumed to be homogeneous material, while the coating Consists of multilayered media or sigmoid FGMs. The sigmoid FGM is a kind of FGM in which the material properties of the coating are governed by two power-law functions of volume fractions such that the functions of the material property represent sigmoid distributions in the thickness direction, simply called S-FGM in this paper. For the multi-layered coatings, one two, and four-layered homogeneous coatings with stepwise changing volume fractions are considered. The primary problem addressed herein is the appearance of a crack in the coating surface and its expansion into the substrate along the direction perpendicular to the interface between the coating and the substrate. The results show that if the coating is stiffer than the substrate, a crack in a one-layered coating is much more susceptible to propagation into the substrate than a crack in the two- or four-layered coating. But crack growth can be effectively averted by using an S-FGM coating. However, if the coating is softer than the substrate, the S-FGM coating behaves like a bridge to connect the soft coating and the stiff substrate, and facilitates the expansion of the crack expanding into the substrate. Whereas the one layered coating can more effectively prevent the crack from propagating into the substrate than can the two- or four layered coating. The investigation also indicates that the material gradations of S-FGMs influence SIFs obviously only when the crack tip is inside the coating that is stiffer than the substrate. As the crack extends through the coating and into the substrate, the material gradation of the S-FGM coating and the material mismatch of the multi-layered coating slightly bear on the values of SIF.
机译:这项研究通过有限元方法评估了涂层-基材复合材料中裂纹的多层和功能梯度材料(FGM)涂层的应力强度因子(SIF),这是由于裂纹表面上均匀的法向应力所致。假定基材为均质材料,而涂层则包含多层介质或S型FGM。 S形FGM是一种FGM,其中涂层的材料特性由体积分数的两个幂律函数控制,使得材料特性的函数代表厚度方向上的S形分布,在此简称为S-FGM纸。对于多层涂层,考虑具有逐步变化的体积分数的一,二和四层均质涂层。在此解决的主要问题是在涂层表面出现裂纹,并且裂纹沿着垂直于涂层和基材之间的界面的方向向基材扩展。结果表明,如果涂层比基材坚硬,则一层涂层的裂纹比两层或四层涂层的裂纹更容易传播到基材中。但是,通过使用S-FGM涂层可以有效避免裂纹扩展。但是,如果涂层比基底软,则S-FGM涂层的行为就像连接软涂层和刚性基底的桥梁一样,并有助于裂纹扩展到基底中。然而,与两层或四层涂层相比,一层涂层可以更有效地防止裂纹扩展到基底中。研究还表明,仅当裂纹尖端位于比基底坚硬的涂层内部时,S-FGM的材料渐变才会明显影响SIF。当裂纹延伸穿过涂层并进入基底时,S-FGM涂层的材料等级和多层涂层的材料不匹配会稍微影响SIF值。

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