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首页> 外文期刊>Journal of Sandwich Structures and Materials >Blast resistance and energy absorption of sandwich panels with layered gradient metallic foam cores
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Blast resistance and energy absorption of sandwich panels with layered gradient metallic foam cores

机译:分层梯度金属泡沫芯的砂光电池板的抗耐电阻和能量吸收

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摘要

The dynamic response, blast resistance and energy absorption capability of clamped square sandwich panels comparing two aluminum alloy face-sheets and a layered gradient metallic foam core, subjected to air-blast loading, were studied numerically in this paper. Graded sandwich specimens with six different core-layer arrangements and three different face-sheet thickness arrangements were examined, respectively, compared to those ungraded sandwich panels with an equivalent nominally mass. Simulation results show that the blast resistance and energy absorption capability of sandwich panels with layered gradient metallic foam cores could be improved by optimizing the arrangements of different density metallic foam core-layers, and the graded sandwich panel with low-middle-high density core configuration has the best blast resistance capability. The blast resistance of graded sandwich panels with different thickness arrangements for top and bottom face-sheets has no obvious change tendency, since the normal stress distributions of their sandwich cross sections are controlled simultaneously by face-sheets and gradient foam core.
机译:在本文的情况下,研究了夹紧方形夹层和分层梯度金属泡沫芯的夹紧方形夹层板的动态响应,抗电阻和能量吸收能力。与那些具有相当于名义上质量的未非未来的夹层面板相比,分别检查具有六种不同芯层布置和三种不同的面板厚度布置的分级夹层标本。仿真结果表明,通过优化不同密度金属泡沫芯层的布置,可以提高与层状梯度金属泡沫芯的砂光电阻和能量吸收能力,并通过低中青芯核心构造的梯度夹心面板提高具有最佳的抗电阻能力。具有不同厚度布置的分级夹层面板对顶部和底部面板的抗血栓电阻没有明显的变化倾向,因为夹层横截面的正常应力分布通过面部片和梯度泡沫芯同时控制。

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