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Shock wave speed and stress-strain relation of aluminium honeycombs under dynamic compression

机译:动态压缩下铝蜂窝状的冲击波速度和应力 - 应变关系

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The propagation of layer-wise crushing bands in cellular materials under dynamic impact can be described by the plastic shock wave model. A cell-based finite element model of irregular aluminum honeycomb is constructed to carry out several constant-velocity compression tests. The shock wave speed is obtained by the one-dimensional stress distribution in the specimen along the loading direction. The relation between the shock wave speed and impact velocity is obtained and analyzed. It is found that the relation tends to be linear with the increase of the impact velocity. But the shock wave speed tends to be a constant value with the decrease of the impact velocity. A piecewise model is proposed to describe the dynamic stress-strain relation of aluminum honeycombs based on a piecewise hypothesis of the relation between the shock wave speed and the impact velocity together with the one-dimensional shock wave theory. Different stress-strain relations corresponding to different impact velocity regions and different deformation modes are obtained.
机译:通过塑性冲击波模型描述在动态冲击下的细胞材料中的层明显的压碎带的传播。构造不规则铝蜂窝状的基于细胞的有限元模型,以进行几个恒定速度压缩测试。通过沿着装载方向的样品中的一维应力分布获得冲击波速度。获得并分析冲击波速度和冲击速度之间的关系。结果发现,随着冲击速度的增加,该关系趋于线性。但是,随着撞击速度的降低,冲击波速度趋于恒定值。提出了一种分段模型来描述铝蜂窝状的动态应力 - 应变关系,基于冲击波速度与冲击速度与一维冲击波理论的关系的分段假设。获得对应于不同冲击速度区域和不同变形模式的不同应力应变关系。

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