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首页> 外文期刊>Journal of Mines, Metals & Fuels >Crushing analysis of multi-layer aluminum honeycomb - experiment and numerical simulation
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Crushing analysis of multi-layer aluminum honeycomb - experiment and numerical simulation

机译:多层铝蜂窝粉碎分析 - 实验与数值模拟

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摘要

To investigate the performance of multi-layer aluminum honeycombs under compression, experiments have been carried out, where crush behaviours were compared between two combinations by using finite element program ANSYS/LS-DYNA, and the validation of the FE model was approved by comparing the simulation result with the data from the experiment. The results show that the force-displacement curves of a multi-layer aluminum honeycomb reflect a trend, in which the peak forces decrease gradually with the increase of layers and the plateau stage is getting shorter with the curves becoming increasingly smooth. This trend is viewed as being beneficial to the compressive process when the specimens are fully crushed. The energy absorption is basically linearly proportional to the number of layers. The staggered arrangement should be given priority due to its energy absorption property.
机译:为了研究压缩下的多层铝蜂窝的性能,已经进行了实验,其中通过使用有限元程序ANSYS / LS-DYNA比较了两个组合之间的挤压行为,并通过比较了FE模型的验证 从实验中的数据进行仿真结果。 结果表明,多层铝蜂窝的力 - 位移曲线反映了趋势,其中峰值随着层的增加而逐渐降低,平台阶段越来越短,曲线变得越来越平滑。 当样品完全压碎时,这种趋势被视为有益于压缩过程。 能量吸收基本上与层数线性成比例。 由于其能量吸收性能,应优先考虑交错的安排。

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