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General remarks on cyclic cohesive zone models

机译:关于循环内聚区模型的一般性评论

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Cyclic cohesive zone models represent powerful numerical tools to describe and predict different phenomena of fatigue. In the present paper a review is given about the state of the art of cyclic cohesive zone modelling. Firstly, a commented survey of the history of cyclic cohesive zone models is presented starting from the strip-yield models of Dugdale and Barenblatt and ending with the modern creep-fatigue models. Next, the paper focuses on the thermodynamically consistent formulation of cyclic cohesive zone models. In particular, the formulation of cohesive zone potentials, the choice of appropriate deformation and damage measures as well as the assembly of damage evolution equations are discussed in detail. In this context, established models are critically compared with a model recently proposed by the authors. Finally, some numerical examples are presented for illustration, dealing with fatigue crack growth, uniaxial fatigue life prediction, and intergranular fatigue damage. These simulations demonstrate the wide range of applications of cyclic cohesive zone models.
机译:循环粘性区模型代表了强大的数值工具,可以描述和预测不同的疲劳现象。在本文中,对循环内聚区建模的技术现状进行了回顾。首先,从Dugdale和Barenblatt的带屈服模型开始,到现代蠕变疲劳模型结束,对循环粘性带模型的历史进行了评论性的综述。接下来,本文重点讨论循环内聚区模型的热力学一致性公式。特别是,详细讨论了内聚区势的公式化,适当的变形和损伤措施的选择以及损伤演化方程的组合。在这种情况下,已建立的模型与作者最近提出的模型进行了严格的比较。最后,给出了一些数值示例,以说明疲劳裂纹扩展,单轴疲劳寿命预测和晶间疲劳损伤。这些模拟证明了循环内聚区模型的广泛应用。

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