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Crack Growth Simulation in Quasi-brittle Materials Using a Localizing Gradient Damage Model

机译:基于局部梯度损伤模型的准脆性材料裂纹扩展模拟

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Failure in quasi-brittle materials comes under an intermediate category of fracture failure, which includes different stages, i.e., micro-cracks nucleation, growth, and coalescence into a macroscopic crack. The different stages of failure result in a tension-softening structural response, which can be accurately modeled using the conventional gradient damage models. However, due to a constant interacting domain throughout the load history, conventional gradient damage models suffer from various drawbacks which limits their application to simulate the final stages of quasi-brittle failure process. In this contribution, the present work illustrates a ther-modynamically consistent localizing gradient damage model, which successfully overcomes the drawbacks of conventional gradient damage models. The localizing gradient damage model uses an interaction function definition in the constitutive framework to take into account the diminishing nonlocal interactions, thus attaining a macroscopic crack in the form of a localized damage profile during the last stages of failure. The numerical accuracy of the model is tested against both mode-I and mode-II types of failure problems and compared with the experimental results.
机译:准脆性材料的破坏属于断裂破坏的中间类别,包括不同阶段,即微裂纹成核、生长和合并成宏观裂纹。不同的破坏阶段会导致拉伸软化结构响应,可以使用传统的梯度损伤模型对其进行精确建模。然而,由于在整个荷载历史中存在一个恒定的相互作用域,传统的梯度损伤模型存在各种缺陷,这限制了它们在模拟准脆性破坏过程最后阶段中的应用。在这篇文章中,本文阐述了一个热力学一致的局部梯度损伤模型,它成功地克服了传统梯度损伤模型的缺点。局部梯度损伤模型使用本构框架中的相互作用函数定义,以考虑非局部相互作用的减少,从而在破坏的最后阶段以局部损伤剖面的形式获得宏观裂纹。针对I型和II型失效问题测试了模型的数值精度,并与实验结果进行了比较。

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