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Dynamic Compressive Behaviors of Two-Layer Graded Aluminum Foams under Blast Loading

机译:爆炸载荷作用下两层梯度铝泡沫的动态压缩行为

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摘要

Experimental and numerical analyses were carried out to reveal the behaviors of two-layer graded aluminum foam materials for their dynamic compaction under blast loading. Blast experiments were conducted to investigate the deformation and densification wave formation of two-layer graded foams with positive and negative gradients. The shape of the stress waveform changed during the propagation process, and the time of edge rising was extended. Finite element models of two-layer graded aluminum foam were developed using the periodic Voronoi technique. Numerical analysis was performed to simulate deformation, energy absorption, and transmitted impulse of the two-layer graded aluminum foams by the software ABAQUS/Explicit. The deformation patterns were presented to provide insights into the influences of the foam gradient on compaction wave mechanisms. Results showed that the densification wave occurred at the blast end and then gradually propagated to the distal end for the positive gradient; however, compaction waves simultaneously formed in both layers and propagated to the distal end in the same direction for the negative gradient. The energy absorption and impulse transfer were examined to capture the effect of the blast pressure and the material gradient. The greater the foam gradient, the more energy dissipated and the more impulse transmitted. The absorbed energy and transferred impulse are conflicting objectives for the blast resistance capability of aluminum foam materials with different gradient distributions. The results could help in understanding the performance and mechanisms of two-layer graded aluminum foam materials under blast loading and provide a guideline for effective design of energy-absorbing materials and structures.
机译:进行了实验和数值分析,揭示了在爆炸载荷下两层梯度铝泡沫材料的动态压实性能。进行了爆炸实验,以研究具有正和负梯度的两层渐变泡沫的变形和致密化波的形成。应力波形的形状在传播过程中发生了变化,并且边缘上升的时间延长了。使用周期性Voronoi技术开发了两层渐变铝泡沫的有限元模型。通过ABAQUS / Explicit软件进行了数值分析,以模拟两层渐变铝泡沫的变形,能量吸收和传递脉冲。提出了变形模式,以提供有关泡沫梯度对压实波机制的影响的见解。结果表明,致密化波发生在爆炸端,然后以正梯度逐渐传播到远端。然而,压实波同时在两层中形成,并在负梯度的相同方向上传播到远端。检查了能量吸收和脉冲传递以捕获爆炸压力和材料梯度的影响。泡沫梯度越大,耗散的能量越多,传递的脉冲也越多。吸收的能量和传递的脉冲是具有不同梯度分布的泡沫铝材料抗爆炸能力的目标冲突。研究结果有助于理解爆炸载荷下两层梯度铝泡沫材料的性能和机理,并为有效设计吸能材料和结构提供指导。

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