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A phase-field regularized cohesive zone model for hydrogen assisted cracking

机译:氢辅助裂化的相场正则粘聚区模型

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Being able to seamlessly deal with complex crack patterns like branching, merging and even fragmentation, phase-field fracture/damage models are promising in the modeling of localized failure in solids. This paper addresses a phase-field regularized cohesive zone model (PF-CZM) for hydrogen assisted cracking based on our previous work on purely mechanical problems. Two distinct hydrogen enhanced decohesion mechanisms are dealt with by introducing various implicitly defined (via the crack phase-field) hydrogen-dependent softening laws. The resulting models are then numerically tested and compared against several benchmark examples. It is found that, though the PF-CZM gives different results regarding various decohesion mechanisms, the global responses are insensitive to both the mesh discretization resolution and the incorporated length scale parameter even in the presence of hydrogen. (C) 2019 Elsevier B.V. All rights reserved.
机译:能够无缝处理复杂的裂纹模式(例如分支,合并甚至破碎),相场断裂/损伤模型在固体局部失效建模中很有希望。本文基于我们先前对纯机械问题的研究,提出了一种用于氢辅助裂解的相场规则化内聚区模型(PF-CZM)。通过引入各种隐式定义的(通过裂纹相场)氢相关的软化定律,可以处理两种不同的氢增强的去内聚机理。然后对生成的模型进行数值测试,并与几个基准示例进行比较。发现,尽管PF-CZM在各种脱粘机理方面给出了不同的结果,但是即使在存在氢的情况下,全局响应对网格离散分辨率和所包含的长度比例参数也不敏感。 (C)2019 Elsevier B.V.保留所有权利。

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