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Modeling dynamic fracture of solids with a phase-field regularized cohesive zone model

机译:使用相场规则化粘聚区模型对固体的动态断裂建模

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Being able to seamlessly deal with complex crack patterns like branching, merging and even fragmentation, the phase-field model, amongst several alternatives, is promising in the computational modeling of dynamic fracture in solids. This paper presents an extension of our recently introduced phase-field cohesive zone model for static fracture to dynamic fracture in brittle and quasi-brittle solids. The model performance is tested with several benchmarks for dynamic brittle and cohesive fracture. Good agreement is achieved with existing findings and experimental results; and particularly the results are independent to the discretization resolution and the incorporated length scale parameter. The latter is in contrast to existing phase-field models. (C) 2018 Elsevier B.V. All rights reserved.
机译:能够无缝处理复杂的裂纹模式,例如分支,合并甚至破碎,相场模型以及多种替代方法在固体动态裂缝的计算建模中很有希望。本文介绍了我们最近引入的用于静态断裂的相场内聚区模型的扩展,该模型适用于脆性和准脆性固体中的动态断裂。该模型的性能通过动态脆性和粘性断裂的多个基准进行了测试。与现有发现和实验结果达成了良好的一致性;尤其是结果与离散化分辨率和合并的长度比例参数无关。后者与现有的相场模型相反。 (C)2018 Elsevier B.V.保留所有权利。

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