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Compressive deformation and energy-absorption capability of aluminium honeycomb core

机译:铝蜂窝芯的压缩变形和能量吸收能力

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摘要

In this study, the crush behaviour and the energy absorption capability of an aluminium honeycomb core is discussed. A three-dimensional finite-element model of a honeycomb-core structure was developed using the commercial code Abaqus. Flatwise and edgewise experimental compressive tests were made to validate the numerical model and good agreement was found between the experimental data and the numerical results. Virtual compressive tests varying the cell size, cell-wall thickness, and material properties were performed. The deformation mode, compressive core behaviour and its energyabsorption capacity were examined. The crushing parameters at in-plane directions were more affected by the variations of the characteristic core parameters; although, in general, increasing the cell-wall thickness and the yield stress of the aluminium alloy give higher crush loads, and therefore the absorbed energy increases. However, if the cell size increases, the energy-absorption capacity decreases. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项研究中,讨论了铝蜂窝芯的挤压行为和能量吸收能力。使用商业代码Abaqus开发了蜂窝芯结构的三维有限元模型。进行了水平和边缘实验压缩试验,以验证该数值模型,并在实验数据和数值结果之间找到了很好的一致性。进行了虚拟压缩测试,这些测试改变了孔尺寸,孔壁厚度和材料特性。研究了变形模式,压缩芯行为及其能量吸收能力。特征岩心参数的变化对平面内破碎参数的影响更大。尽管一般来说,增加铝合金的孔壁厚度和屈服应力会产生更高的挤压载荷,因此吸收的能量会增加。但是,如果泡孔尺寸增加,则能量吸收能力降低。 (C)2017 Elsevier Ltd.保留所有权利。

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