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A residual control staggered solution scheme for the phase-field modeling of brittle fracture

机译:脆性断裂相场建模的残余控制交错解决方案

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The phase-field approach to fracture modeling circumvents the crack-surface tracking problem by introducing the phase-field variable which separates the broken and unbroken material states through a smooth transition. However, very fine spatial discretization is required to resolve the smooth distribution of the phase-field regulated by a small length scale parameter. Thus, it can be computationally rather expensive when paired with an inefficient solution scheme. This contribution presents a comprehensive discussion on the use of a stopping criterion within the broadly used staggered algorithm. The stopping criterion of the iterative scheme based on the control of the residual norm is introduced and implemented in the finite element software Abaqus. It alleviates the problem of the common single iteration staggered algorithm, which requires fine loading incrementation to produce an accurate solution. The model verification is conducted on several standard benchmark tests and a porous microstructure exhibiting complex crack phenomena. The detailed discussions regarding the proposed implementation's accuracy and CPU time usage are provided, demonstrating an improvement in computational efficiency with accurate results no longer dependent on the careful selection of loading incrementation. The algorithm codes in the form of the Abaqus user subroutines UMAT and UEL are publicly available on Mendeley data repository linked to this work.
机译:通过引入通过平滑过渡将破碎和未破坏的材料状态分开的相场变量来围绕裂缝建模的相位场方法来缩短裂缝表面跟踪问题。然而,需要非常精细的空间离散化来解决由小长度比例参数调节的相位场的平滑分布。因此,当与低效解决方案方案配对时,它可以计算得相当昂贵。这一贡献提出了关于在广泛使用的交错算法内使用停止标准的全面讨论。基于残余规范控制的迭代方案的停止标准在ABAQUS的有限元软件中引入和实现。它减轻了常见的单迭代交错算法的问题,这需要精细加载递增来产生准确的解决方案。模型验证是在几种标准基准测试和具有复杂裂纹现象的多孔微观结构进行的。提供了关于拟议实施准确性和CPU时间使用的详细讨论,展示了计算效率的提高,准确的结果不再取决于仔细选择加载递增。 ABAQUS用户子程序UMAT和UEL形式的算法代码在链接到此工作的Mendeley数据存储库上公开可用。

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