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Time-dependent cohesive zone modelling for discrete fracture simulation

机译:基于时间的内聚区建模,用于离散裂缝模拟

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摘要

The cohesive crack tip model became very popular in fracture and failure mechanics, start-ing with the original publications of (Dugdale, 1960) [1] and (Barenblatt, 1962) [2] and first practical applications in the early 1980s. A compact representation of the fracture mechan-ical basis, kinematic and constitutive issues as well as some special characteristics of the related finite element formulation are given in the first part of this contribution. The main part is dedicated to the presentation and discussion of recent developments of cohesive finite element methods for time-dependent fracture. On the basis of a rheological model assumption, a novel viscoelastic extension for cohesive traction separation laws is pre-sented and the resultant characteristic behaviour is depicted and compared for different loading conditions. Adopting an industrial application of a peel foil specimen, the time-dependent characteristics as well as some aspects of parameter identification and applica-tion of the material model are shown.
机译:粘性裂纹尖端模型在断裂和破坏力学中非常流行,始于(Dugdale,1960)[1]和(Barenblatt,1962)[2]的原始出版物以及1980年代初的首次实际应用。论文的第一部分给出了断裂力学基础,运动学和本构问题以及相关有限元公式的一些特殊特征的紧凑表示。主要部分致力于介绍和讨论随时间变化的裂缝的粘性有限元方法的最新发展。在流变模型假设的基础上,提出了一种新的用于粘滞牵引力分离定律的粘弹性扩展,并描述了所得的特性行为并针对不同的载荷条件进行了比较。展示了剥离箔样品的工业应用,并显示了随时间变化的特性以及参数识别和材料模型应用的某些方面。

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