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Compressive response and energy absorption of all-composite sandwich panels with channel cores

机译:带槽芯的全复合材料夹芯板的压缩响应和能量吸收

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摘要

The novel all-composite sandwich panel with channel core was proposed for simultaneous compressive strength and energy absorption characteristic subjected to quasi-static out-of-plane compression. The structure was composed of carbon fiber reinforced polymer (CFRP) face-sheets and channel core. The compressive responses and deformation mechanism of the proposed structure were studied by the method of experiment and finite element analyses (FEA). Meanwhile, the sandwich panel with traditional corrugated core was also considered and fabricated, as comparison. In contrast to sandwich panel with traditional corrugated core, the proposed structure exhibited a progressive crushing mode, indicating the compressive strength and specific energy ab-sorption were increased by 209.03 and 718.32. Compared with different damage modes, the damage mode of delamination makes sandwich panel with channel core exhibit much better compressive strength and specific energy absorption. Besides, the method of foam filling is also considered to improve structural efficiency further by offering support and constraint of boundary condition. The compressive strength and specific energy ab-sorption of foam filled sandwich panel with channel increase by 89.19 and 29.28 respectively. Due to good structural efficiency, the proposed structure had wide potential applications in lightweight fields.
机译:针对准静态面外压缩下同时具有抗压强度和吸能特性的新型通道芯全复合材料夹芯板。该结构由碳纤维增强聚合物(CFRP)面板和槽芯组成。采用实验和有限元分析(FEA)的方法研究了所提结构的压缩响应和变形机理。同时,还考虑并制作了采用传统波纹芯的夹芯板,作为对比。与传统波纹芯夹芯板相比,该结构呈现渐进式破碎模式,抗压强度和比吸能分别提高了209.03%和718.32%。与不同的损伤模式相比,分层的损伤模式使带槽芯的夹芯板表现出更好的抗压强度和比能量吸收。此外,还考虑了泡沫填充方法通过提供边界条件的支撑和约束来进一步提高结构效率。槽面泡沫填充夹芯板的抗压强度和比能吸收率分别提高了89.19%和29.28%。由于结构效率好,该结构在轻量化领域具有广泛的应用潜力。

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