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Prediction of crushing morphology of GRP composite sandwich panels under edgewise compression

机译:GRP复合材料夹芯板边向压缩下的破碎形态预测

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摘要

This paper describes the use of finite element analysis (FEA) for the simulation of the crushing response of glass reinforced plastic (GRP) composite sandwich panels aimed to absorb collision energy. FEA was employed to predict the failure mode associated with the geometry of a triggering mechanism that was introduced in the foam-cored sandwich panels, and for analyses of the influence of the specimens' aspect ratio on the specific energy absorption of these panels. The formulated numerical models were found to be effective in reproducing the failure mode and crush zone morphology experimentally observed. The numerical results predicted a trigger geometry that marks the transition from catastrophic buckling failure to progressive crushing and showed that there is not an apparent trend between the aspect ratio of the panels and their specific energy absorption.
机译:本文介绍了有限元分析(FEA)用于模拟旨在吸收碰撞能量的玻璃钢(GRP)复合夹芯板的压溃响应的方法。 FEA用于预测与泡沫芯夹芯板中引入的触发机制的几何形状相关的破坏模式,并分析样品的长宽比对这些板的比能量吸收的影响。发现所建立的数值模型可有效地再现破坏模式和实验观察到的挤压区形态。数值结果预测了触发几何形状,该几何形状标志着从灾难性屈曲破坏到渐进压溃的过渡,并显示出面板的纵横比与其比能量吸收之间没有明显的趋势。

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