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A variationally consistent phase-field anisotropic damage model for fracture

机译:裂纹的相变一致相场各向异性损伤模型

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摘要

In the phase-field modeling of fracture in brittle and quasi-brittle solids, it is crucial to represent the asymmetric tensile/compressive material behavior. Existing phase-field models generally adopt either an intuitive split of the free energy density without capturing the crack boundary conditions properly or an ad hoc hybrid formulation at the loss of variational consistency. To address this issue, this work presents a variationally consistent phase-field anisotropic damage model within the framework of the unified phase-field theory for brittle fracture and quasi-brittle failure Wu [1,2]. Consistent with the variational approach to fracture, the positiveegative projection of the effective stress in energy norm Wu and Cervera [3] is adopted, minimizing the tensile part of the stored energy that drives crack evolution. A rounded-Rankine criterion naturally emerges to realistically characterize localized failure of brittle and quasi-brittle solids, with no need of ad hoc assumptions. A mixed-mode cohesive zone model is recovered upon strain localization, with the involved parameters determined from the analytical solution of a softening bar under constrained stretching. Representative numerical examples show that the proposed model can capture arbitrary cracks propagation in solids independently of the mesh discretization and length scale parameter. Remarkably, the spurious stress locking, which is notoriously accompanied with classical anisotropic damage models, is not exhibited. (C) 2019 Elsevier B.V. All rights reserved.
机译:在脆性和准脆性固体断裂的相场模拟中,至关重要的是要表现出不对称的拉伸/压缩材料行为。现有的相场模型通常采用自由能密度的直观划分而不恰当地捕获裂纹边界条件,或者采用临时混合公式,以保持变化一致性。为了解决这个问题,这项工作在统一的脆性断裂和准脆性破坏的相场理论的框架内提出了一个变化一致的相场各向异性损伤模型[1,2]。与断裂的变分方法相一致,采用了能量规范Wu和Cervera [3]中有效应力的正/负投影,从而最小化了驱动裂纹发展的储能的拉伸部分。圆滑的朗肯准则自然而然地出现,可以在不需要临时假设的情况下真实地表征脆性和准脆性固体的局部破坏。在应变局部化后,将恢复混合模式的内聚区模型,其中的相关参数是从受约束拉伸下的软化棒的解析溶液中确定的。代表性的数值例子表明,所提出的模型可以捕获任意的裂纹在固体中的传播,而与网格离散和长度比例参数无关。值得注意的是,没有显示出伴随着经典各向异性损伤模型的杂散应力锁定。 (C)2019 Elsevier B.V.保留所有权利。

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