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Axial crushing of metal foam-filled square columns: Foam density distribution and impactor inclination effects

机译:金属泡沫填充方柱的轴向破碎:泡沫密度分布和冲击器倾角效应

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In this paper, the effects of foam density distribution and initial impactor inclination angle on crushing behaviour of metal foam-filled thin-walled square columns have been investigated. The simplified version of an existing pressure dependent self-similar constitutive model with tensile failure for metal foam has been implemented in ABAQUS/Explicit code. Random distribution of cubic regions with normal distribution of density has been created. The analyses have been accomplished for three distinct foam densities, two extreme random distributions (fine and coarse), and five different impactor inclination angles. A local effect on folding patterns of columns filled with low-density foam has been identified. Furthermore, unstable bending mode of collapse appears in the case of slightly inclined impactor and medium and high-density foams. In addition, for high-density foam-filled specimens global buckling can initiate by just letting the density of foam vary inside the sample.
机译:本文研究了泡沫密度分布和初始冲击角对金属泡沫填充薄壁方柱的破碎行为的影响。 ABAQUS / Explicit代码已实现了现有的压力依赖性自相似本构模型的简化版本,该模型具有金属泡沫的拉伸失效。已创建具有正态密度分布的立方区域的随机分布。已经针对三种不同的泡沫密度,两种极端的随机分布(精细和粗糙)以及五个不同的撞击角度进行了分析。已经确定了对填充低密度泡沫的柱的折叠模式的局部影响。此外,在轻微倾斜的撞击器以及中高密度泡沫的情况下,会出现不稳定的塌陷弯曲模式。另外,对于高密度泡沫填充的样品,只要让样品内部的泡沫密度变化,就可以引发整体屈曲。

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