Computation of SIFs for cracked FGMs under mechanical and thermal loadings

Y. Ait Ferhat, Abdelkeder Boulenouar
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引用次数: 3

Abstract

Abstract The objective of this study is to present a numerical modeling of mixed-mode fracture in isotropic functionally graded materials (FGMs), under mechanical and thermal loading conditions. In this paper, a modified displacement extrapolation technique (DET) was proposed to calculate the stress intensity factor (SIFs) for isotropic FGMs. Using the Ansys Parametric Design Language APDL, the continuous variations of the material properties are incorporated by specified parameters at the centroid of each element. Three numerical examples are presented to evaluate the accuracy of SIFs calculated by the proposed method. Comparisons have been made between the SIFs predicted by the DET and the available reference solutions in the current literature. A good agreement is obtained between the results of the DET and the reference solutions.
力学和热载荷下裂纹fgm的SIFs计算
摘要本研究的目的是建立各向同性功能梯度材料(fgm)在机械和热载荷条件下的混合模式断裂的数值模型。提出了一种改进的位移外推法(DET)来计算各向同性fgm的应力强度因子(SIFs)。利用Ansys参数化设计语言APDL,将材料性能的连续变化通过每个元素质心的指定参数进行合并。最后给出了三个数值算例,验证了该方法计算的SIFs的精度。将DET预测的SIFs与当前文献中可用的参考方案进行了比较。DET计算结果与参考解吻合较好。
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