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A numerical study of the energy-absorption characteristics of metal tube-reinforced polymer foams

机译:金属管增强聚合物泡沫能量吸收特性的数值研究

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摘要

This article investigates the energy-absorbing behaviour of lightweight foam structures reinforced with aluminium and steel cylindrical tubes. Initial testing focuses on establishing the influence of the inner diameter to thickness ratio (D/t) of the metal tubes on their specific energy-absorption characteristics under quasistatic compression and low velocity impact loading. Following this, individual metal tubes are embedded in a range of crosslinked PVC foams, and the specific energy-absorption characteristics of these reinforced systems are determined. The effect of increasing the number of tubes on the energy-absorbing response of the tube-reinforced structures is also studied. The crushing responses of both aluminium and steel structures are then predicted using the finite element analysis package Abaqus/Explicit, and the predictions of the load-displacement responses and the associated failure modes are compared to experimental results. Agreement between the numerical predictions and the experimental data is good across the range of structures investigated, with the model accurately predicting the compression response and failure characteristics observed in the structures. It has been shown that the stiffness of the foam does not significantly alter the energy-absorbing behaviour of the stiffer metal tubes, suggesting that the density of the foam should be as low as possible, whilst maintaining the structural integrity of the part.
机译:本文研究了用铝和钢圆柱管加固的轻质泡沫结构的能量吸收行为。初始测试侧重于在Quasistatic压缩和低速冲击载荷下建立金属管的内径与金属管的厚度比(d / t)的影响。在此之后,各个金属管嵌入在一系列交联的PVC泡沫中,并且确定这些增强系统的特定能量吸收特性。还研究了增加管子上的管数对管增强结构的能量吸收响应的影响。然后使用有限元分析包ABAQUS /显式预测铝和钢结构的破碎响应,并且将负载 - 位移响应和相关的故障模式的预测与实验结果进行了预测。在研究的结构范围内,数值预测和实验数据之间的协议良好,模型准确地预测结构中观察到的压缩响应和失效特性。已经表明,泡沫的刚度不会显着改变脱脂金属管的能量吸收行为,表明泡沫的密度应该尽可能低,同时保持部分的结构完整性。

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