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A theoretical model for the study of thermal fracture of functionally graded thermal barrier coatings

机译:功能梯度热障涂层热断裂研究的理论模型

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The problem of fracture of functionally graded coatings (FGCs) on a homogeneous substrate (a semi-infinite medium) is investigated under the influence of thermal and/or mechanical loads (e.g. a heat flux, residual thermal stresses caused by cooling-heating, tension). These loads reflect the most important cases, which arise during the exploitation of FGC structures. The FGC contains pre-existing systems of cracks, such as edge, internal and interface cracks. The mathematical description of the model is based on singular integral equations. The properties of the FGC are continuous functions of the thickness coordinate. Furthermore, the non-homogeneity of the functionally graded material is revealed in the form of corresponding inhomogeneous traction distributions on the surfaces of cracks. This method is approximate and used with the assumption, that the gradation of material properties of the FGC with the depth of the layer is not abrupt. The influence of residual stresses caused by temperature changes on AT (cooling) is investigated in detail. Different crack patterns (which are reported in experiments and available in the literature) are studied by carrying out numerical experiments with respect to stress intensity factors, fracture angles (a deviation of cracks from the initial direction of propagation) and critical loads, when the propagation of cracks starts. The proposed model in combination with a detailed parametric analysis can help to optimize FGCs in order to improve the fracture resistance of FGC/homogeneous systems.
机译:研究了均匀基体(半无限介质)上功能梯度涂层(FGC)在热载荷和/或机械载荷(例如热流、冷热引起的残余热应力、张力)影响下的断裂问题。这些荷载反映了FGC结构开采过程中出现的最重要情况。FGC包含预先存在的裂纹系统,例如边缘、内部和界面裂纹。模型的数学描述基于奇异积分方程。FGC的特性是厚度坐标的连续函数。此外,功能梯度材料的非均匀性表现为裂纹表面相应的不均匀牵引分布。该方法是近似的,并在假设FGC的材料特性随层深度的渐变不是突然的情况下使用。详细研究了温度变化引起的残余应力对AT(冷却)的影响。在裂纹开始扩展时,通过进行有关应力强度因子、断裂角(裂纹偏离初始扩展方向)和临界载荷的数值实验,研究了不同的裂纹模式(在实验中报告并在文献中提供)。该模型与详细的参数分析相结合,有助于优化FGC,以提高FGC/均质系统的抗断裂性能。

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