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首页> 外文期刊>Strength of Materials >Flatwise Compression Strength and Energy Absorption of Polyurethane Foam-Filled Lattice Core Sandwich Panels
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Flatwise Compression Strength and Energy Absorption of Polyurethane Foam-Filled Lattice Core Sandwich Panels

机译:用聚氨酯泡沫填充格子芯夹层板的平坦压缩强度和能量吸收

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摘要

In the present study, the effect of the polyurethane foam-filled lattice core sandwich panel on the energy absorption and the compression strength was investigated. In the compression tests, it was found that the foam-filled sandwich panels have a greater load-carrying capacity compared to the sum of the unfilled specimens and the filled polyurethane block. Moreover, the energy absorption efficiency of foam-filled sandwich panels with higher relative density (5.1 and 5.7%) lattice cores was lower than that of the unfilled specimen when the compressive strain was small, whereas it was superior when the compressive strain reached about 0.1, and this superiority became more pronounced with the strain increase. Moreover, the energy absorption of foam-filled sandwich panels with lower relative density (4.43%) lattice cores was superior to that of the unfilled specimen.
机译:在本研究中,研究了聚氨酯泡沫填充晶格芯夹层板对能量吸收和压缩强度的影响。 在压缩试验中,发现与未填充的样品和填充的聚氨酯块的总和相比,泡沫填充的夹层面板具有更大的负载承载能力。 此外,当压缩菌株较小时,具有较高相对密度(5.1和5.7%)格子芯的泡沫填充夹层面板的能量吸收效率低于未填充标本的泡沫状夹层芯的能量吸收效率。当压缩菌株达到约0.1时,它越优越 ,这种优越性变得更加明显,随着应变的增加。 此外,具有较低相对密度(4.43%)格子芯的泡沫填充夹层面板的能量吸收优于未填充的样本。

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