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Analytical Investigation And Optimal Design Of Sandwich Panels Subjected To Shock Loading

机译:承受冲击载荷的夹芯板的分析研究与优化设计

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This paper first presents an experimental investigation into square metallic sandwich panels with either honeycomb core or aluminium foam core under blast loading, followed by an analytical analysis of their structural response. In analytical modeling, the deformation is divided into three phases, corresponding to the front face deformation, core crushing and overall structural bending and stretching, respectively. The response in the last phase is considered using either small deflection or large deflection theory, based on the extent of panel deformation. The analysis is based on an energy balance and assumed displacement fields. Using the proposed analytical model, an optimal design has been conducted for square sandwich panels for a given mass, and loaded by various levels of impulse. Effect of several key design parameters, i.e. ratio of side lengths, relative density of core, and core thickness is discussed.
机译:本文首先对爆炸载荷作用下具有蜂窝芯或泡沫铝芯的方形金属夹芯板进行了实验研究,然后对其结构响应进行了分析。在分析建模中,变形分为三个阶段,分别对应于正面变形,岩心破碎和整体结构弯曲和拉伸。根据面板变形的程度,可以使用小挠度或大挠度理论来考虑最后阶段的响应。该分析基于能量平衡和假定的位移场。使用所提出的分析模型,针对给定质量的方形夹心板进行了优化设计,并承受了各种水平的冲击力。讨论了几个关键设计参数的影响,即边长比,芯的相对密度和芯厚度。

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