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Revisiting the problem of a crack impinging on an interface: A modeling framework for the interaction between the phase field approach for brittle fracture and the interface cohesive zone model

机译:再次探讨裂纹撞击界面的问题:用于脆性断裂的相场方法与界面粘结区模型之间相互作用的建模框架

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The problem of a crack impinging on an interface has been thoroughly investigated in the last three decades due to its important role in the mechanics and physics of solids. In the current investigation, this problem is revisited in view of the recent progresses on the phase field approach of brittle fracture. In this concern, a novel formulation combining the phase field approach for modeling brittle fracture in the bulk and a cohesive zone model for pre-existing adhesive interfaces is herein proposed to investigate the competition between crack penetration and deflection at an interface. The model, implemented within the finite element method framework using a monolithic fully implicit solution strategy, is applied to provide a further insight into the understanding of the role of model parameters on the above competition. In particular, in this study, the role of the fracture toughness ratio between the interface and the adjoining bulks and of the characteristic fracture-length scales of the dissipative models is analyzed. In the case of a brittle interface, the asymptotic predictions based on linear elastic fracture mechanics criteria for crack penetration, single deflection or double deflection are fully captured by the present method. Moreover, by increasing the size of the process zone along the interface, or by varying the internal length scale of the phase field model, new complex phenomena are emerging, such as simultaneous crack penetration and deflection and the transition from single crack penetration to deflection and penetration with subsequent branching into the bulk. The obtained computational trends are in very good agreement with previous experimental observations and the theoretical considerations on the competition and interplay between both fracture mechanics models open new research perspectives for the simulation and understanding of complex fracture patterns. (C) 2017 The Authors. Published by Elsevier B.V.
机译:由于裂纹在固体力学和物理学中的重要作用,在过去的三十年中已经对裂纹撞击到界面上的问题进行了彻底的研究。在当前的研究中,鉴于脆性断裂的相场方法的最新进展,对该问题进行了重新探讨。考虑到这一点,本文提出了一种新颖的配方,该配方结合了用于模拟块体内脆性断裂的相场方法和用于预先存在的粘合界面的内聚区模型,以研究裂纹渗透和界面挠度之间的竞争。使用单片完全隐式求解策略在有限元方法框架内实现的模型可用于进一步理解模型参数在上述竞争中的作用。特别是,在这项研究中,分析了界面和相邻块体之间的断裂韧度比以及耗散模型的特征断裂长度尺度的作用。在脆性界面的情况下,本方法完全捕获了基于线性弹性断裂力学准则的裂纹渗透,单挠度或双挠度的渐近预测。此外,通过增加沿界面的加工区的大小,或通过改变相场模型的内部长度尺度,出现了新的复杂现象,例如同时出现裂纹渗透和变形,以及从单一裂纹渗透到变形和变形的过渡。渗透,随后分支成大部分。所获得的计算趋势与先前的实验观察非常吻合,并且两种断裂力学模型之间的竞争和相互作用的理论考虑为复杂的断裂模式的模拟和理解开辟了新的研究视角。 (C)2017作者。由Elsevier B.V.发布

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