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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Strain Rate Effect on Mechanical Behavior of Metallic Honeycombs Under Out-of-Plane Dynamic Compression
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Strain Rate Effect on Mechanical Behavior of Metallic Honeycombs Under Out-of-Plane Dynamic Compression

机译:应变速率对平面外动态压缩下金属蜂窝力学行为的影响

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摘要

Although many researches on the dynamic behavior of honeycombs have been reported, the strain rate effect of parent materials was frequently neglected, giving rise to the underestimated plateau stress and energy absorption (EA). In this paper, the strain rate effect of parent materials on the out-of-plane dynamic compression and EA of metallic honeycombs is evaluated by both numerical simulation and theoretical analysis. The numerical results show that the plateau stress and the EA increase significantly if the strain rate effect is considered. To account for the strain rate effect, a new theoretical model to evaluate the dynamic compressive plateau stress of metallic honeycombs is proposed by introducing the Cowper-Symonds relation into the shock theory. Predictions of the present model agree fairly well with the numerical results and existing experimental data. Based on the present model, the plateau stress is divided into three terms, namely static term, strain rate term, and inertia term, and thus the influences of each term can be analyzed quantitatively. According to the analysis, strain rate effect is much more important than inertia effect over a very wide range of impact velocity.
机译:尽管已经报道了许多有关蜂窝动力学行为的研究,但母体材料的应变率效应却经常被忽略,从而导致了低估的平台应力和能量吸收(EA)。本文通过数值模拟和理论分析,评估了母体材料对金属蜂窝平面外动态压缩和EA的应变率效应。数值结果表明,如果考虑应变率效应,则平台应力和EA显着增加。考虑到应变率效应,通过将考珀-西蒙兹关系引入到冲击理论中,提出了一个新的理论模型来评估金属蜂窝的动态压缩平台应力。本模型的预测与数值结果和现有实验数据非常吻合。在此模型的基础上,将平台应力分为静态项,应变率项和惯性项三项,从而可以定量分析各项的影响。根据分析,在很大的冲击速度范围内,应变率效应比惯性效应重要得多。

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