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首页> 外文期刊>International Journal of Mechanical Sciences >Finite element simulation of metallic cylindrical sandwich shells with graded aluminum tubular cores subjected to internal blast loading
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Finite element simulation of metallic cylindrical sandwich shells with graded aluminum tubular cores subjected to internal blast loading

机译:内爆载荷作用下带有渐变铝管状芯的金属圆柱夹心壳的有限元模拟

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摘要

The LS-DYNA software was employed to analyze the dynamic responses of a sandwich cylindrical shell system under internal blast loading. The system consisted of metallic face sheets and graded aluminum tubular cores with different wall thicknesses. The response of this system was also compared with that of conventional ungraded ones. The dynamic response of graded cylindrical shells with a series of different core arrangements is reported in this paper. The deformation and blast resistance of the structures were discussed in detail, and the optimum sandwich configuration was obtained. The core layers, which had thickness-tapered arrangement from the inner to the outer layer, were favorable for the energy dissipation and the out face-sheet deflection. Finally, two new response types were defined based on the core compression consequence, which is unique to sandwich structures with graded cores. (C) 2015 Elsevier Ltd. All rights reserved.
机译:LS-DYNA软件用于分析内部爆炸载荷作用下的夹心圆柱壳系统的动力响应。该系统由金属面板和具有不同壁厚的渐变铝管状芯组成。还将该系统的响应与常规未分级的系统进行了比较。本文报道了具有一系列不同岩心排列的梯度圆柱壳的动力响应。详细讨论了结构的变形和抗爆炸性能,并获得了最佳的夹心结构。从内层到外层厚度呈锥形排列的芯层有利于能量消散和面板外挠度。最后,根据核心压缩结果定义了两种新的响应类型,这对于具有渐变核心的夹心结构是唯一的。 (C)2015 Elsevier Ltd.保留所有权利。

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