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Cracking elements: A self-propagating Strong Discontinuity embedded Approach for quasi-brittle fracture

机译:裂纹元素:准脆性断裂的自蔓延强不连续性嵌入方法

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摘要

In this paper, we present aself-propagatingStrong Discontinuity embedded Approach (SDA) for quasi-brittle fracture. The method is based on the Statically Optimal Symmetric formulation (SOS) of the SDA using the 8-node quadrilateral element which avoids local stress locking. A non-continuous crack path is assumed such that the crack is modelled by a set of disconnected cracking segments. Hence, no complex crack tracking procedure and no explicit (or implicit) representation of the crack surface are needed. A local fracture criteria is proposed for determining the orientation of the crack. Several numerical tests with irregular discretizations are performed, demonstrating the effectiveness and robustness of the presented method.
机译:在本文中,我们提出了一种用于准脆性断裂的自传播强不连续性嵌入方法(SDA)。该方法基于使用8节点四边形元素的SDA的静态最优对称公式(SOS),可避免局部应力锁定。假定不连续的裂纹路径,从而通过一组不连续的裂纹段对裂纹进行建模。因此,不需要复杂的裂纹跟踪程序,也不需要显式(或隐式)表示裂纹表面。建议使用局部断裂准则来确定裂纹的方向。使用不规则离散进行了几个数值测试,证明了所提出方法的有效性和鲁棒性。

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