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Effect of Strain Rate on Impact Behavior of Aluminum Foam

机译:应变速率对铝泡沫冲击行为的影响

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摘要

Due to increase of terrorist threats and attacks, reasonable and economical designs for impact resistant protective structures are necessary. To ensure the appropriate use of aluminum foam panels as sacrificial panels, the compressive behavior of aluminum foam must be investigated. This work presents broad experimental and numerical investigations of the strain rate sensitivity of closed-cell aluminum foam and its effect on the strength parameters of foam. Air gun tests for direct impact testing and split Hopkinson pressure bar (SHPB) tests were performed to investigate the deformation and energy absorption characteristics of aluminum foam with an increase in strain rate. Along with these experiments, numerical finite element analyses for both air gun and SHPB tests were performed with LS-DYNA. For the explicit analysis, the strain rate was considered in the material model, and the experimental work was verified by the numerical approach. The deformations and yield strengths of the aluminum foam were investigated with increasing strain rate. Parametric analyses were also conducted to determine the minimum required thickness of aluminum foam and an equation is proposed to calculate the minimum foam thickness while considering the effect of the strain rate. Moreover, to ensure realistic and economical designs for protective structures, a recommendation was provided for the aluminum foam thickness. This concept is compared with another study where strain rate effect was not considered for a close range blast load resistant protective structure. The pressure transmitted through the aluminum foam to the attached concrete wall was measured and the magnitude of reflected and mitigated transmitted pressure was observed. Consideration of strain rate effect leads to a lower required foam thickness and a lower magnitude of the pressure transmitted to the structure.
机译:由于恐怖威胁和攻击的增加,抗冲击保护结构的合理和经济设计是必要的。为了确保适当使用泡沫铝板作为牺牲板,必须研究泡沫铝的压缩性能。这项工作提出了闭孔铝泡沫的应变速率敏感性及其对泡沫强度参数的影响的广泛的实验和数值研究。进行了用于直接冲击测试的气枪测试和霍普金森压力杆(SHPB)分离测试,以研究随着应变率的增加,泡沫铝的变形和能量吸收特性。除了这些实验,还使用LS-DYNA对气枪和SHPB测试进行了数值有限元分析。为了进行明确的分析,在材料模型中考虑了应变速率,并通过数值方法验证了实验工作。随着应变速率的增加,研究了泡沫铝的变形和屈服强度。还进行了参数分析,以确定泡沫铝的最小所需厚度,并提出了一个方程来计算最小泡沫厚度,同时考虑了应变速率的影响。而且,为了确保保护结构的现实和经济的设计,建议了泡沫铝的厚度。将该概念与另一项研究进行了比较,在该研究中,未考虑近距离爆炸载荷防护结构的应变率效应。测量通过泡沫铝传递到附着的混凝土墙的压力,并观察反射和减轻的传递压力的大小。考虑应变率效应会导致所需的泡沫厚度较小,并且传递到结构的压力强度较小。

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