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Delamination buckling and propagation analysis of honeycomb panels using a cohesive element approach

机译:蜂窝板脱层屈曲和传播分析的内聚单元法

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摘要

The cohesive element approach is proposed as a tool for simulating delamination propagation between a facesheet and a core in a honeycomb core composite panel. To determine the critical energy release rate (G_c) of the cohesive model, Double Cantilever Beam (DCB) fracture tests were performed. The peak strength (sigma_c) of the cohesive model was determined from Flatwise Tension (FWT) tests. The DCB coupon test was simulated using the measured fracture parameters, and sensitivity studies on the parameters for the cohesive model of the interface element were performed. The cohesive model determined from DCB tests was then applied to a full-scale, 914 X 914 mm (36 X 36 in.) debond panel under edge compression loading, and results were compared with an experiment. It is concluded that the cohesive element approach can predict delamination propagation of a honeycomb panel with reasonable accuracy.
机译:凝聚元方法被提议为一种模拟面板和蜂窝状芯复合板中的芯之间的分层传播的工具。为了确定内聚模型的临界能量释放速率(G_c),进行了双悬臂梁(DCB)断裂试验。内聚模型的峰值强度(sigma_c)由平面拉伸(FWT)测试确定。使用测得的断裂参数模拟DCB试件测试,并对界面元素内聚模型的参数进行敏感性研究。然后,将由DCB测试确定的内聚模型应用于边缘压缩载荷下的914 X 914毫米(36 X 36英寸)全尺寸去粘板上,并将结果与​​实验进行比较。结论是,内聚单元法可以合理的精度预测蜂窝板的分层传播。

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