首页> 外文期刊>Acta Mechanica Solida Sinica >COMPUTATION OF STRESS INTENSITY FACTORS BY THE SUB-REGION MIXED FINITE ELEMENT METHOD OF LINES
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COMPUTATION OF STRESS INTENSITY FACTORS BY THE SUB-REGION MIXED FINITE ELEMENT METHOD OF LINES

机译:线分区混合有限元法计算应力强度因子

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摘要

Based on the sub-region generalized variational principle, a sub-region mixed version of the newly-developed semi-analytical 'finite element method of lines' (FEMOL) is proposed in this paper for accurate and efficient computation of stress intensity factors (SIFs) of two-dimensional notches/cracks. The circular regions surrounding notch/crack tips are taken as the complementary energy region in which a number of leading terms of singular solutions for stresses are used, with the sought SIFs being among the unknown coefficients. The rest of the arbitrary domain is taken as the potential energy region in which FEMOL is applied to obtain approximate displacements. A mixed system of ordinary differential equations (ODEs) and algebraic equations is derived via the sub-region generalized variational principle. A singularity removal technique that eliminates the stress parameters from the mixed equation system eventually yields a standard FEMOL ODE system, the solution of which is no longer singular and is simply and efficiently obtained using a standard general-purpose ODE solver. A number of numerical examples, including bi-material notches/cracks in anti-plane and plane elasticity, are given to show the generally excellent performance of the proposed method.
机译:基于子区域广义变分原理,本文提出了一种新开发的半分析“有限元线法”(FEMOL)的子区域混合版本,用于精确有效地计算应力强度因子(SIF)。 )的二维缺口/裂纹。切口/裂纹尖端周围的圆形区域被视为互补能量区域,其中使用了应力奇异解的多个前导项,并且所寻求的SIF在未知系数中。任意域的其余部分都作为势能区域,在其中应用FEMOL以获得近似位移。通过子区域广义变分原理导出了常微分方程(ODE)和代数方程的混合系统。一种从混合方程组中消除应力参数的奇异性消除技术最终产生了一个标准FEMOL ODE系统,该系统的解决方案不再是奇异的,可以使用标准的通用ODE求解器简单有效地获得。给出了许多数值示例,包括在反平面和平面弹性方面的双材料缺口/裂纹,以显示所提出方法的总体上出色的性能。

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