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Absorbed energy by foam-filled quadrangle tubes during the crushing process by considering the interaction effects

机译:考虑相互作用效应,填充泡沫的四边形管在破碎过程中吸收的能量

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摘要

In this article, some theoretical relations are derived to predict instantaneous crushing force and absorbed energy during initial fold formation in polyurethane foam-filled quadrangle tubes under the axial crushing load. Theoretical analysis is performed based on the energy method. In the theoretical analysis, crushing wavelength is considered as a constant parameter through the process and as a function of column geometrical dimensions. In the analytical calculations, interaction effects between the polyurethane foam and inner wall of quadrangle tubes are considered and a formula is presented to predict absorbed energy by the interaction effects. In the experiment part, some foam-filled specimens were prepared and axially crushed to obtain experimental diagram of crushing force versus axial displacement. Comparison of the theoretical predictions of crushing force and absorbed energy with corresponding experimental results showed a good agreement. Also, it was found that theoretical predictions by considering the interaction effects have a better correlation respect to the experiments. (C) 2014 Politechnika Wroclawska. Published by Elsevier Urban & Partner Sp. z o.o. All rights reserved.
机译:在本文中,推导了一些理论关系来预测在轴向破碎载荷下聚氨酯泡沫填充四边形管在初始褶皱形成过程中的瞬时破碎力和吸收能。基于能量方法进行理论分析。在理论分析中,压碎波长在整个过程中被视为一个常数参数,并且是色谱柱几何尺寸的函数。在分析计算中,考虑了聚氨酯泡沫与四边形管内壁之间的相互作用效应,并提出了一个通过相互作用效应预测吸收能的公式。在实验部分,准备了一些泡沫填充样品并轴向破碎,以获得破碎力与轴向位移的实验图。将压碎力和吸收能的理论预测值与相应的实验结果进行比较,表明吻合良好。另外,还发现考虑相互作用影响的理论预测与实验具有更好的相关性。 (C)2014 Politechnika Wroclawska。由Elsevier Urban&Partner Sp。动物园。版权所有。

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