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首页> 外文期刊>Steel & Composite Structures: An International Journal >Computation of mixed-mode stress intensity factors in functionally graded materials by natural element method
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Computation of mixed-mode stress intensity factors in functionally graded materials by natural element method

机译:自然元素法计算功能分级材料中混合模式应力强度因子的计算

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摘要

This paper is concerned with the numerical calculation of mixed-mode stress intensity factors (SIFs) of 2-D isotropic functionally graded materials (FGMs) by the natural element method (more exactly, Petrov-Galerkin NEM). The spatial variation of elastic modulus in non-homogeneous FGMs is reflected into the modified interaction integral (M) over tilde ((1,2)). The local NEM grid near the crack tip is refined, and the directly approximated strain and stress fields by PG-NEM are enhanced and smoothened by the patch recovery technique. Two numerical examples with the exponentially varying elastic modulus are taken to illustrate the proposed method. The mixed-mode SIFs are parametrically computed with respect to the exponent index in the elastic modulus and external loading and the crack angle and compared with the other reported results. It has been justified from the numerical results that the present method successfully and accurately calculates the mixed-mode stress intensity factors of 2-D non-homogeneous functionally graded materials.
机译:本文涉及通过天然元素法(更确切地说,Petrov-Galerkin Nem)的2-D各向同性功能梯度材料(FGMS)的混合模式应力强度因子(SIF)的数值计算。非均质FGMS中弹性模量的空间变化被反映在色调上的改性相互作用积分(M)((1,2))中。裂纹尖端附近的本地NEM网格精制,通过PG-NEM的直接近似应变和应力场得到增强和通过贴片恢复技术平滑。采用指数变化的弹性模量的两个数值例子来说明所提出的方法。混合模式SIFS在弹性模量和外部负荷和裂缝角度和裂缝角度的指数指数中参数计算,并与其他报道的结果相比。从本方法成功和准确地计算2-D非均匀功能梯度材料的混合模式应力强度因子的数值结果是合理的。

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