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An inverse approach to identify the constitutive model parameters for crashworthiness modelling of composite structures

机译:一种识别本构模型参数的逆方法,用于复合结构的耐撞性建模

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摘要

This paper deals with an inverse technique, based on a multi-objective optimization, for the identification of model parameters defining damage and failure mechanisms in composite materials. The identification process is based on experimental tests of thin-walled cylinders in composite material and finite element analyses. The parameters identified are then used in finite element analysis to predict the dynamic response of subsequently modified energy absorbing structures manufactured for high performance vehicles. Overall assessment shows a good correlation between the experimental and numerical results. The numerical solutions are within 3% of experimental test data and yield noticeable structural performance improvement when evaluating the parameters under static loading.
机译:本文研究了一种基于多目标优化的逆向技术,用于识别定义复合材料破坏和破坏机理的模型参数。识别过程基于复合材料薄壁圆柱体的实验测试和有限元分析。然后,将识别出的参数用于有限元分析中,以预测随后为高性能汽车制造的改进型吸能结构的动力响应。总体评估显示实验结果与数值结果之间具有良好的相关性。数值解法在实验测试数据的3%以内,并且在评估静态载荷下的参数时,结构性能得到了明显改善。

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