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首页> 外文期刊>International Journal of Mechanical Sciences >Coupling damage and plasticity for a phase-field regularisation of brittle, cohesive and ductile fracture: One-dimensional examples
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Coupling damage and plasticity for a phase-field regularisation of brittle, cohesive and ductile fracture: One-dimensional examples

机译:脆性,粘性和韧性骨折的相场正规化的耦合损伤和可塑性:一维例

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Plasticity and damage are two fundamental phenomena in nonlinear solid mechanics associated with the development of inelastic deformations and the reduction of the material stiffness. Alessi et al. [5] have recently shown, through a variational framework, that coupling a gradient-damage model with plasticity can lead to macroscopic behaviours assimilable to ductile and cohesive fracture. Here, we further expand this approach considering specific constitutive functions frequently used in phase-field models of brittle fracture. A numerical solution technique of the coupled elasto-damage-plasticity problem, based on an alternate minimisation algorithm, is proposed and tested against semi-analytical results. Considering a one-dimensional traction test, we illustrate the properties of four different regimes obtained by a suitable tuning of few key constitutive parameters. Namely, depending on the relative yield stresses and softening behaviours of the plasticity and the damage criteria, we obtain macroscopic responses assimilable to (i) brittle fractured la Griffith, (ii) cohesive fractures of the Barenblatt or Dugdale type, and (iii) a sort of cohesive fracture including a depinning energy contribution. The comparisons between numerical and analytical results prove the accuracy of the proposed numerical approach in the considered quasi-static time-discrete setting, but they also emphasise some subtle issues occurring during time-discontinuous evolutions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:可塑性和损伤是与非线性固体机制的两个基本现象,与内部变形的开发相关,并降低了材料刚度。 Alessi等人。最近通过变分框架示出的是,通过变分框架,耦合具有可塑性的梯度损伤模型可以导致宏观行为可用于延展性和粘性骨折。在这里,考虑到脆性断裂的相场模型经常使用的特定本构模型,我们进一步扩展了这种方法。提出基于替代最小化算法的耦合弹性损伤塑性问题的数值解决方案技术,并针对半分析结果测试。考虑到一维牵引试验,我们说明了通过合适调谐少数关键本构型参数获得的四种不同制度的性质。即,取决于可塑性的相对屈服应力和软化行为和损伤标准,我们获得可同化的宏观反应(i)脆性破碎的La Griffith,(ii)Barenblatt或Dugdale型的粘性骨折,(iii)a有点粘性骨折,包括脱油能源贡献。数值和分析结果之间的比较证明了所考虑的准静态时间离散设置中提出的数值方法的准确性,但它们还强调了在暂停过程中发生的一些微妙问题。 (c)2017 Elsevier Ltd.保留所有权利。

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