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Prediction of impact-induced delamination in cross-ply composite laminates using cohesive interface elements

机译:使用内聚界面元素预测交叉复合层压板中的冲击诱发分层

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The paper investigates the potential of cohesive interface elements for damage prediction in laminates subjected to low-velocity impact. FE models with interface elements adopting a bilinear cohesive law were first calibrated and validated by simulation of standard fracture toughness tests and then employed to model the impact response of cross-ply graphite/epoxy laminated plates. The developed model provided a correct simulation of the impact response of laminates in a wide range of energy values and successfully predicted size, shape and location of main damage mechanisms. The results of the analyses also pointed out the importance of employing a damage criterion capable of accounting for the constraining effect of out-of-plane compression on the initiation of the dec-ohesion phase.
机译:本文研究了粘性界面元素在低速冲击下对层压板损伤预测的潜力。首先通过标准断裂韧性测试的仿真来校准和验证采用双线性内聚律的带有界面元素的有限元模型,然后将其用于模拟交叉层石墨/环氧树脂层压板的冲击响应。所开发的模型提供了层压板在各种能量值下的冲击响应的正确模拟,并成功预测了主要破坏机理的尺寸,形状和位置。分析结果还指出了采用能够考虑面外压缩对软化阶段开始的约束作用的损伤准则的重要性。

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