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Structural response and performance of hexagonal thin-walled grooved tubes under dynamic impact loading conditions

机译:动态冲击载荷条件下六角形薄壁沟槽管的结构响应和性能

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This paper numerically investigates the structural response and crashworthiness performance of a hexagonal thin-walled grooved tube subjected to axial and oblique impact loading conditions. First, an analytical formulation that estimates the mean crushing force and total energy absorption are obtained for both hexagonal and circular tubes subjected to high dynamic impact loading conditions. The solutions of the analytical model are used to verify and compare the approximate solutions of the finite element model. The inclusion of grooves to the conventional hexagonal thin-walled tubes shows the great potential for improving the crashworthiness performance such as the energy absorption capacity, crushing force efficiency and specific energy absorption. In further, parametric studies are performed, deformation modes of different models are obtained and their crushing force-displacement characteristics are described. The improved crashworthiness performance of the hexagonal thin-walled grooved tubes make them good candidate used as energy absorbers.
机译:本文数值研究了六角形薄壁沟槽管在轴向和倾斜冲击载荷条件下的结构响应和耐撞性能。首先,获得了承受高动态冲击载荷条件的六角形和圆形管的平均破碎力和总能量吸收的分析公式。分析模型的解用于验证和比较有限元模型的近似解。在常规的六角形薄壁管中包括凹槽显示出巨大的潜力来改善耐撞性能,例如能量吸收能力,破碎力效率和比能量吸收。此外,进行参数研究,获得不同模型的变形模式,并描述其破碎力-位移特性。六角形薄壁沟槽管的改进的耐撞性性能使其成为用作能量吸收器的良好选择。

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