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Evaluation of the T-stress and stress intensity factor for multi-crack problem using spline fictitious boundary element alternating method

机译:样条虚拟边界元交替法评价多裂纹问题的T应力和应力强度因子

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In this paper, the T-stress and stress intensity factor (SIF) of multiple cracks with arbitrary position in a finite plate is evaluated by the spline fictitious boundary element alternating method. The multi-crack problem is firstly divided into a simple model without crack which can be solved by the spline fictitious boundary element method and several infinite domains with one crack which can be solved by the fundamental solution of an infinite domain with a crack, namely Muskhelishvili's fundamental solutions. The technique is superior as no meshing is needed near crack face and the analytical solution for solving infinite domains with one crack is accurate and efficient. Then, instead of using the asymptotic expansion, the closed-form expression for calculating the T-stress in multi-crack problem is derived directly, which makes it convenient and accurate for calculating the T-stress. Besides, the SIF can be calculated using the analytical SIF expression in Muskhelishvili's fundamental solutions. Finally, T-stresses and SIFs in a numerical example with double cracks are computed to validate the accuracy of the presented method, And the other two examples with three cracks are further studied to investigate the influence of lengths and locations of multiple cracks on their T-stresses and SIFs.
机译:本文采用样条虚拟边界元交替法对有限板中任意位置的多个裂纹的T应力和应力强度因子(SIF)进行了评估。首先将多裂纹问题分为无裂纹的简单模型,可以通过样条虚拟边界元法求解;有裂纹的多个无限域,可以通过有裂纹的无限域的基本解来解决,即Muskhelishvili's基本解决方案。该技术具有优越性,因为在裂纹面附近无需网格划分,并且用一个裂纹求解无限大区域的解析方法是准确而高效的。然后,不使用渐近展开式,而是直接导出用于计算多裂纹问题中T应力的闭式表达式,这使得计算T应力变得方便而准确。此外,可以使用Muskhelishvili基本解中的解析SIF表达式来计算SIF。最后,通过计算双裂纹数值例子中的T应力和SIF来验证所提方法的准确性,并进一步研究了三个裂纹的另两个例子,以研究多个裂纹的长度和位置对其T的影响。 -应力和SIF。

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