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Quasi-static axial crushing of extruded polystyrene foam-filled thin-walled aluminum tubes: Experimental and numerical analysis

机译:挤塑聚苯乙烯泡沫薄壁铝管的准静态轴向破碎:实验和数值分析

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摘要

The experimental and numerical quasi-static crushing responses of extruded closed cell polystyrene foam-filled thin-walled aluminum tubes were investigated. The numerical crash analysis of empty and foam-filled tubes was performed using the explicit finite element code PAM-CRASH™. Satisfactory agreements were generally achieved between the finite element model and experimental deformed shapes, load–displacements, fold lengths and specific energy absorptions. The model and experiments have also highlighted the several effects of foam filling on the crushing of thin-walled tubes. The energy absorptions in foam-filled tubes were further shown to be higher than the sum of the energy absorptions of empty tube (alone) and filler (alone).
机译:研究了挤压闭孔聚苯乙烯泡沫填充薄壁铝管的实验和数值准静态挤压响应。使用显式有限元代码PAM-CRASH™对空的和泡沫填充的管进行了数值碰撞分析。在有限元模型和实验变形形状,载荷-位移,折叠长度和比能量吸收之间通常达成令人满意的协议。该模型和实验还强调了泡沫填充对薄壁管破碎的几种影响。进一步显示,泡沫填充管的能量吸收比空管(单独)和填料(单独)的能量吸收总和更高。

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