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Dynamic Response and Optimal Design of Curved Metallic Sandwich Panels under Blast Loading

机译:爆炸载荷作用下弯曲金属夹芯板的动力响应及优化设计

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摘要

It is important to understand the effect of curvature on the blast response of curved structures so as to seek the optimal configurations of such structures with improved blast resistance. In this study, the dynamic response and protective performance of a type of curved metallic sandwich panel subjected to air blast loading were examined using LS-DYNA. The numerical methods were validated using experimental data in the literature. The curved panel consisted of an aluminum alloy outer face and a rolled homogeneous armour (RHA) steel inner face in addition to a closed-cell aluminum foam core. The results showed that the configuration of a “soft” outer face and a “hard” inner face worked well for the curved sandwich panel against air blast loading in terms of maximum deflection (MaxD) and energy absorption. The panel curvature was found to have a monotonic effect on the specific energy absorption (SEA) and a nonmonotonic effect on the MaxD of the panel. Based on artificial neural network (ANN) metamodels, multiobjective optimization designs of the panel were carried out. The optimization results revealed the trade-off relationships between the blast-resistant and the lightweight objectives and showed the great use of Pareto front in such design circumstances.
机译:重要的是要了解曲率对弯曲结构爆炸响应的影响,以寻求具有改进的抗爆炸性的此类结构的最佳配置。在这项研究中,使用LS-DYNA检查了承受空气冲击载荷的一种弯曲金属夹芯板的动力响应和防护性能。使用文献中的实验数据验证了数值方法。弯曲的面板除了由闭孔泡沫铝芯组成之外,还包括铝合金外表面和碾压均匀铠装(RHA)钢内表面。结果表明,“弯曲”夹芯板的“软”外表面和“硬”内表面的配置在最大挠度(MaxD)和能量吸收方面抵抗了爆炸载荷。发现面板曲率对面板的比能量吸收(SEA)具有单调影响,并且对面板的MaxD具有非单调影响。基于人工神经网络元模型,对面板进行了多目标优化设计。优化结果揭示了防爆和轻量化目标之间的折衷关系,并表明了在这种设计环境下Pareto front的大量使用。

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