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首页> 外文期刊>Mechanics of Advanced Materials and Structures >Analysis of Mode III Elastodynamic Cracked Plane Using the Fractal Two-Level Finite Element Method
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Analysis of Mode III Elastodynamic Cracked Plane Using the Fractal Two-Level Finite Element Method

机译:分形两级有限元法分析III型弹塑性裂纹平面

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摘要

In this article, the fractal two-level finite element method, which has mainly been used for static crack problems, is applied to mode III elastodynamic plane crack problems. Using the transformation process in the proposed method, the infinite dimension of the finite element matrices that are assembled for a singular region is made finite in terms of the dynamics stress intensity factors directly and, thus, the computational time and errors can be reduced significantly. The Newmark time integration scheme is then used to obtain the dynamic stress intensity factors for different crack cases. The results from the proposed method are in reasonable agreement with those of classical methods. A parametric study is conducted to investigate the effects of different parameters on the accuracy of the dynamic stress intensity factor.
机译:本文将分形两级有限元方法(主要用于静态裂纹问题)应用于III型弹性动力平面裂纹问题。使用所提出的方法中的变换过程,针对单个奇异区域组装的有限元矩阵的无限维就直接根据动态应力强度因子而言是有限的,从而可以显着减少计算时间和误差。然后使用Newmark时间积分方案获得不同裂纹情况下的动应力强度因子。所提出的方法的结果与经典方法的结果是合理一致的。进行了参数研究,以研究不同参数对动态应力强度因子准确性的影响。

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