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Irreversible mixed mode interface delamination using a combined damage-plasticity cohesive zone enabling unloading

机译:不可逆的混合模式界面分层,结合使用了可破坏的可塑性结合区域

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摘要

Delamination is often identified as an important failure mechanism in structures with a high interface density, such as modern microelectronic systems and advanced composite materials. Delamination tests performed on different interface structures reveal complex failure mechanisms (crack bridging, fibre pull out, micro-void coalescence, fibrilation, crack meandering, etc.) in the fracture process zone that lead to an irreversible unloading response of the interface, ranging from full damage to full plasticity. Modeling the unloading response of an interface is important for predicting phenomena such as crack branching and crack propagation at multiple interfaces. This paper presents a 2D irreversible combined plasticity-damage unloading model, which can be used to extend the cohesive zone (loading) models with a proper unloading description that is suitable for modeling the entire loading-unloading response in the process zone. The presented model is able to capture changes in unloading behavior as a function of mode mixity, whereas it introduced only two additional model parameters that can be determined from dedicated delaminationexperiments. As a demonstration, the improved Xu-Needleman cohesive zone law has been extended with the proposed combined damage-plasticity unloading formulation. Numerical simulations with this extended model are performed for a glue interface system, recovering the typical observed behavior in delamination experiments. Finally, a complete procedure to extract all CZ model parameters is presented and illustrated for the glue interface system.
机译:在高界面密度的结构(例如现代微电子系统和先进的复合材料)中,分层通常被认为是重要的破坏机制。在不同的界面结构上进行的分层测试揭示了断裂过程区域中复杂的破坏机制(裂纹桥接,纤维拉出,微孔聚结,原纤维化,裂纹曲折等),导致界面的不可逆卸荷响应,范围从完全破坏可塑性。对接口的卸载响应进行建模对于预测诸如裂纹在多个接口处的分支和裂纹扩展之类的现象非常重要。本文提出了一种二维不可逆的可塑性-破坏组合卸载模型,该模型可用于扩展具有适当卸载描述的内聚力区域(加载)模型,该模型适用于建模过程区域中的整个加载-卸载响应。提出的模型能够捕获卸荷行为随模式混合度的变化,而仅引入了两个额外的模型参数,这些参数可以通过专门的分层实验确定。作为演示,已改进的徐-尼德曼粘聚区定律已与拟议的损伤-可塑性卸载组合公式相结合。使用该扩展模型对胶接口系统进行了数值模拟,恢复了分层实验中观察到的典型行为。最后,给出并举例说明了胶水界面系统的所有CZ模型参数的提取完整过程。

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