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A comparative study of blast resistance of cylindrical sandwich panels with aluminum foam and auxetic honeycomb cores

机译:泡沫铝与膨胀蜂窝芯圆柱夹芯板的爆炸阻力比较研究。

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摘要

The dynamic response of cylindrical sandwich panels with aluminum foam core, hexagonal honeycomb core, and auxetic honeycomb core are compared numerically. A novel curved auxetic honeycomb core is designed, and the finite element models are built by employing ABAQUS-Explicit. To calibrate the numerical models, the experiments of sandwich panels with honeycomb core and aluminum foam cores are modeled. And the numerical results have a good agreement with the experiment date. The calibrated numerical models are used to simulate the dynamic response of cylindrical panels subject to external blast loadings. It is found that the cylindrical panels with auxetic honeycomb cores have a better performance than that with aluminum foam cores and hexagonal honeycomb cores in resisting blast loadings. A material concentration effect was observed in the auxetic honeycomb core due to the negative Poisson's ratio (NPR) effect. According to parameter studies, it is concluded that with the increase of curvature and face sheet thickness the blast-resistance of panels with both auxetic honeycomb core, hexagonal honeycomb core, and foam cores increased obviously, especially the panels with auxetic honeycomb cores. For the panels with auxetic honeycomb cores, increasing the back face sheet thickness can improve the blast-resistance performance more efficiently than increasing the thickness of front face sheet, which is opposite for the panels with foam cores and hexagonal honeycomb cores. Auxetic cores with a smaller unit cell aspect ratio and a smaller unit cell length ratio has a larger Poisson's ratio, and achieves better blast resistance performance. These simulation findings can guide well the theoretical study and optimal design of cylindrical sandwich structures subject to external blast loading. (C) 2019 Elsevier Masson SAS. All rights reserved.
机译:数值比较了铝泡沫芯,六边形蜂窝芯和膨胀蜂窝芯圆柱夹芯板的动力响应。设计了一种新颖的弧形膨胀蜂窝芯,并利用ABAQUS-Explicit建立了有限元模型。为了校准数值模型,对具有蜂窝芯和泡沫铝芯的夹芯板的实验进行了建模。数值结果与实验日期吻合良好。校准的数值模型用于模拟圆柱板在外部爆炸载荷作用下的动力响应。结果发现,具有膨胀蜂窝状芯的圆柱形面板在抵抗爆炸载荷方面具有比具有泡沫铝芯和六边形蜂窝状芯的圆柱形面板更好的性能。由于负泊松比(NPR)效应,在膨胀蜂窝状芯中观察到材料集中效应。根据参数研究得出的结论是,随着曲率和面板厚度的增加,膨胀蜂窝芯,六边形蜂窝芯和泡沫芯的面板的抗爆炸性明显增加,尤其是膨胀蜂窝芯的面板。对于带有膨胀蜂窝芯的面板,增加背面板的厚度可以比增加正面面板的厚度更有效地提高抗爆炸性能,这对于带有泡沫芯和六角形蜂窝芯的面板是相反的。具有较小的晶胞长径比和较小的晶胞长径比的辅助性芯具有较大的泊松比,并具有更好的抗爆炸性能。这些模拟结果可以很好地指导承受外部爆炸载荷的圆柱夹层结构的理论研究和优化设计。 (C)2019 Elsevier Masson SAS。版权所有。

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