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Partial Al foam filling of commercial 1050H14 Al crash boxes: The effect of box column thickness and foam relative density on energy absorption

机译:商用1050H14 Al防撞箱的部分Al泡沫填充:箱柱厚度和泡沫相对密度对能量吸收的影响

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摘要

The crushing behavior of partially Al closed-cell foam filled commercial 1050H14 Al crash boxes was determined at quasi-static and dynamic deformation velocities. The quasi-static and dynamic crushing of the boxes were simulated using the LS-DYNA. The results showed that partial foam filling tended to change the deformation mode of empty boxes from a non-sequential to a sequential folding mode. In general, the experimental and simulation results showed similar mean load values and deformation modes. The SEA values of empty, partially and fully foam filled boxes were predicted as function of box wall thickness between 1 and 3 mm and foam filler relative density between 0 and 0.2, using the analytical equations developed for the mean crushing loads. The analysis indicated that both fully and partially foam filled boxes were energetically more efficient than empty boxes above a critical foam filler relative density. Partial foam filling, however, decreases the critical foam filler density at increasing box wall thicknesses.
机译:在准静态和动态变形速度下确定了部分填充有铝闭孔泡沫的商用1050H14 Al碰撞盒的破碎行为。使用LS-DYNA模拟了箱子的准静态和动态破碎。结果表明,部分泡沫填充趋向于将空盒子的变形模式从非顺序的折叠模式变为顺序的折叠模式。通常,实验和仿真结果显示出相似的平均载荷值和变形模式。使用为平均破碎载荷开发的解析方程,可以预测空,部分和完全填充泡沫的箱子的SEA值是箱子壁厚在1到3毫米之间以及泡沫填充剂相对密度在0到0.2之间的函数。分析表明,在临界泡沫填充物相对密度以上的情况下,完全填充和部分填充泡沫的箱子在能量上都比空箱子有效。但是,部分泡沫填充会随着箱壁厚度的增加而降低临界泡沫填充剂的密度。

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