AbstractA novel phase field formulation implemented within a material point method setting is developed to addr'/> Material point method for crack propagation in anisotropic media: a phase field approach
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Material point method for crack propagation in anisotropic media: a phase field approach

机译:各向异性介质中裂纹扩展的材料点法:相场法

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AbstractA novel phase field formulation implemented within a material point method setting is developed to address brittle fracture simulation in anisotropic media. The case of strong anisotropy in the crack surface energy is treated by considering an appropriate variational, i.e. phase field approach. Material point method is utilized to efficiently treat the resulting coupled governing equations. The brittle fracture governing equations are defined at a set of Lagrangian material points and subsequently interpolated at the nodes of a fixed Eulerian mesh where solution is performed. As a result, the quality of the solution does not depend on the quality of the underlying finite element mesh and is relieved from mesh distortion errors. The efficiency and validity of the proposed method are assessed through a set of benchmark problems.
机译: Abstract 开发了一种在材料点方法设置内实现的新型相场公式,以解决各向异性介质中的脆性断裂模拟。通过考虑适当的变化,即相场方法,可以解决裂纹表面能强烈各向异性的情况。物质点方法被用来有效地处理所产生的耦合控制方程。脆性断裂控制方程定义在一组拉格朗日材料点上,然后在执行求解的固定欧拉网格节点处进行插值。结果,解决方案的质量不取决于基础有限元网格的质量,并且可以消除网格失真错误。通过一系列基准问题评估了该方法的有效性和有效性。

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