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Crack nucleation in variational phase-field models of brittle fracture

机译:脆性断裂变相场模型中的裂纹形核

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摘要

Phase-field models, sometimes referred to as gradient damage or smeared crack models, are widely used methods for the numerical simulation of crack propagation in brittle materials. Theoretical results and numerical evidences show that they can predict the propagation of a pre-existing crack according to Griffith' criterion. For a one-dimensional problem, it has been shown that they can predict nucleation upon a critical stress, provided that the regularization parameter be identified with the material's internal or characteristic length. In this article, we draw on numerical simulations to study crack nucleation in commonly encountered geometries for which closed-form solutions are not available. We use U- and V-notches to show that the nucleation load varies smoothly from that predicted by a strength criterion to that of a toughness criterion when the strength of the stress concentration or singularity varies. We present validation and verification numerical simulations for both types of geometries. We consider the problem of an elliptic cavity in an infinite or elongated domain to show that variational phase field models properly account for structural and material size effects. Our main claim, supported by validation and verification in a broad range of materials and geometries, is that crack nucleation can be accurately predicted by minimization of a nonlinear energy in variational phase field models, and does not require the introduction of ad-hoc criteria.
机译:相场模型有时被称为梯度损伤或弥散裂纹模型,是用于脆性材料中裂纹扩展数值模拟的广泛使用的方法。理论结果和数值证据表明,它们可以根据格里菲斯(Griffith's)准则预测先前存在的裂纹的扩展。对于一维问题,已经表明,只要可以用材料的内部长度或特征长度标识正则化参数,它们就可以预测临界应力下的形核。在本文中,我们将利用数值模拟来研究在常见的几何形状中无法获得闭合形式的解决方案的裂纹形核。我们使用U形和V形槽口来显示,当应力集中或奇异性的强度发生变化时,成核载荷从强度标准预测的值到韧性标准的变化均平滑。我们介绍了两种类型的几何图形的验证和验证数值模拟。我们考虑在无限或细长域中的椭圆腔问题,以表明变化相场模型正确地说明了结构和材料尺寸的影响。我们的主要主张是,通过在各种材料和几何形状中进行验证和验证,可以通过最小化变相场模型中的非线性能量来准确预测裂纹成核,并且不需要引入临时标准。

著录项

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  • 作者单位

    Laboratoire de Mecanique des solides, Ecole Polytechnique, Route de Saclay, Palaiseau 91120, France,Department of Mathematics and Center for Computation & Technology, Louisiana State University, Baton Rouge, LA 70803, USA;

    IMSIA (UMR EDF-CNRS-CEA-ENSTA ParisTech 9219), Universite Paris-Saclay, Palaiseau 91120, France;

    Department of Mathematics and Center for Computation & Technology, Louisiana State University, Baton Rouge, LA 70803, USA;

    Laboratoire de Mecanique des solides, Ecole Polytechnique, Route de Saclay, Palaiseau 91120, France;

    Sorbonne Universites, UPMC Univ Paris 06, CNRS, UMR 7190, Institut Jean Le Rond d'Alembert, Paris F-75005, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Phase-field models of fracture; Crack nucleation; Size effects in brittle materials; Validation verification; Gradient damage models; Smeared crack models;

    机译:断裂的相场模型;裂纹成核;脆性材料的尺寸效应;验证与验证;梯度损伤模型;涂裂纹模型;
  • 入库时间 2022-08-18 02:59:41

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