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A local moving extended phase field method (LMXPFM) for failure analysis of brittle materials

机译:用于脆性材料失效分析的局部移动扩展相场方法(LMXPFM)

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In this work, a local moving extended phase field method (LMXPFM) is proposed for the failure analysis of brittle materials. In this approach, nonlinear phase field crack evolution equations are solved in an adaptively refined small region (which is prone to crack nucleation or propagation). In the proposed LMXPFM, phase field method (PFM), extended finite element method (XFEM) and multiscale finite element method (MsFEM) are combined together such that the MsFEM acts as a medium to couple coarse mesh with fine mesh, and the XFEM is used to represent a discontinuity (such as crack) outside the phase field region. Thus, the LMXPFM not only provides an adaptively refined mesh in a small region near the smeared discontinuity but also fulfills the prerequisite of refined mesh for solving phase field crack evolution equations. This local approach provides a huge saving in the computational efforts as compared to PFM applied in the entire domain. The efficiency and accuracy of the LMXPFM are verified by solving and comparing the results with standard PFM and literature solutions. (C) 2018 Elsevier B.V. All rights reserved.
机译:在这项工作中,提出了一种局部移动扩展相场方法(LMXPFM),用于脆性材料的失效分析。在这种方法中,非线性相位场裂纹发展方程在自适应细化的小区域(易于裂纹成核或扩展)中求解。在提出的LMXPFM中,将相场法(PFM),扩展有限元法(XFEM)和多尺度有限元法(MsFEM)组合在一起,从而使MsFEM充当将粗糙网格与精细网格耦合的介质,而XFEM是用于表示相场区域外部的不连续性(例如裂纹)。因此,LMXPFM不仅可以在拖尾不连续点附近的小区域提供自适应细化的网格,而且还可以满足求解相场裂纹演化方程的细化网格的先决条件。与在整个领域中应用的PFM相比,这种局部方法可节省大量的计算工作量。通过将结果与标准PFM和文献解决方案进行比较和比较,可以验证LMXPFM的效率和准确性。 (C)2018 Elsevier B.V.保留所有权利。

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