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A new coupled method for high-accuracy determination of fracture parameters of an interface V-notch in magneto-electro-elastic bimaterial

机译:高精度确定磁电弹性双材料界面V形缺口断裂参数的新方法

摘要

A simple coupled method, called "finite element discretized symplectic method" is introduced into the mode III fracture analysis of a V-notched magneto-electro-elastic (MEE) bimaterial. High-accuracy generalized intensity factors and energy release rate are computed to evaluate the singularities of mechanical, electric and magnetic fields. The present method is carried out in two steps. In the first step, the physical domain is meshed by the conventional element for MEE media and is divided into a finite size singular region near the notch tip and a regular region far away from the notch tip. In the second step, analytical symplectic eigenfunctions are employed to transform the large number of nodal unknowns in the singular region into a small set of undetermined coefficients of a symplectic series; the nodal unknowns in the regular region remain as usual. Consequently, the computational cost is enormously reduced and fracture parameters are actually the first three coefficients of the series. Explicit expressions in the singular fields are obtained simultaneously. Numerical results are compared with the existing solutions and found to be in good agreement. Some new results are given also.
机译:一种简单的耦合方法(称为“有限元离散辛方法”)被引入到V型缺口磁电弹性(MEE)双材料的III型断裂分析中。计算高精度的广义强度因子和能量释放率,以评估机械,电场和磁场的奇异性。本方法分两个步骤进行。第一步,将物理域通过MEE介质的常规元素进行网格划分,并划分为靠近缺口尖端的有限大小的奇异区域和远离缺口尖端的规则区域。在第二步中,使用解析辛特征函数将奇异区域中的大量节点未知量转换为一组辛序列的不确定系数;常规区域中的节点未知数仍然像往常一样。因此,极大地降低了计算成本,并且断裂参数实际上是该序列的前三个系数。同时获得单数字段中的显式表达式。数值结果与现有解决方案进行了比较,发现吻合良好。还给出了一些新结果。

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