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Finite Element solution of the fiber/matrix interface crack problem: Convergence properties and mode mixity of the Virtual Crack Closure Technique

机译:纤维/基体界面裂纹问题的有限元解决方案:虚拟裂纹闭合技术的收敛特性和模式混合

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The bi-material interface arc crack has been the focus of interest in the composite community, where it is usually referred to as the fiber-matrix interface crack. In this work, we investigate the convergence properties of the Virtual Crack Closure Technique (VCCT) when applied to the evaluation of the Mode I, Mode II and total Energy Release Rate of the fiber-matrix interface crack in the context of the Finite Element Method (FEM). We first propose a synthetic vectorial formulation of the VCCT. Thanks to this formulation, we study the convergence properties of the method, both analytically and numerically. It is found that Mode I and Mode II Energy Release Rate (ERR) possess a logarithmic dependency with respect to the size of the elements in the crack tip neighborhood, while the total ERR is independent of element size.
机译:双材料界面电弧裂纹一直是复合材料领域关注的焦点,在复合材料社区中,通常将其称为纤维-基体界面裂纹。在这项工作中,我们研究了虚拟裂纹闭合技术(VCCT)在有限元方法的背景下用于评估I型,II型和纤维-基体界面裂纹的总能量释放率时的收敛特性。 (FEM)。我们首先提出VCCT的合成矢量公式。由于采用了这种公式,我们可以从分析和数值两个方面研究该方法的收敛特性。发现模式I和模式II的能量释放率(ERR)相对于裂纹尖端附近元素的大小具有对数依赖性,而总ERR与元素大小无关。

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