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Dynamic response of sandwich panel with hierarchical honeycomb cores subject to blast loading

机译:分层蜂窝芯夹芯板在爆炸载荷作用下的动力响应

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This paper introduces a novel hierarchical core structure to sandwich panel for bearing the blast loading, in which each vertex of a regular hexagonal cell was replaced with a smaller hexagonal unit. The finite element (FE) models of such hierarchical honeycomb sandwich panels were established and validated with the experiments under different impulse loads. The hierarchical honeycomb cores were compared with the regular honeycomb counterpart in terms of the peak deflection on the back facesheet, compression and specific energy absorption (SEA) of the core. The results showed that the maximum deflection at the back facesheet of the hierarchical honeycomb sandwich panels were smaller than the regular honeycomb counterpart for a higher level of blast load (specifically, the dimensionless impulse higher than 0.06). It was found that the structural hierarchical parameter gamma (i.e. the ratio of the newly-introduced smaller hexagonal edge length (L-1) to the regular hexagon edge length (L-0)), had limited influence on the maximum deflection of back facesheet of the sandwich panel, but had a significant effect on the SEA of the cores.
机译:本文介绍了一种新型的分层芯结构,用于承受爆炸载荷的夹芯板,其中规则的六边形单元的每个顶点被较小的六边形单元替代。建立了这种分层蜂窝夹芯板的有限元模型,并在不同的脉冲载荷下通过实验进行了验证。将分层蜂窝状芯子与常规蜂窝状芯子进行了比较,其背面板的峰挠度,芯子的压缩率和比能吸收(SEA)都很高。结果表明,对于较高的爆炸载荷,分层蜂窝夹层板背面的最大挠度小于常规蜂窝夹层的挠度(具体来说,无因次冲量大于0.06)。发现结构层次参数γ(即新引入的较小的六角形边长(L-1)与规则的六角形边长(L-0)之比)对背面板的最大挠度影响有限夹心板的厚度,但对芯子的SEA有显着影响。

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