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Compression behavior and energy absorption of carbon fiber reinforced composite sandwich panels made of three-dimensional honeycomb grid cores

机译:三维蜂窝格芯碳纤维增强复合材料夹芯板的压缩行为和能量吸收

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摘要

Carbon fiber reinforced three dimensional egg and pyramidal honeycomb grids cores with interconnected void spaces were fabricated using an interlocking method. The out-of-plane compression properties, failure modes, and energy absorption capacity of all-composite sandwich panels made of the new 3D grid cores were investigated. The analytical models for predicting the compressive stiffness and strength of both egg and pyramidal honeycomb grids cores were derived. The results showed that the fabricated sandwich panels have higher specific energy absorbing abilities compared to lightweight square honeycombs of same density (10–100 Kg/m3). The new core design promises novel applications for lightweight multifunctional structures due to increased flow in the inner spaces of the core construction, embedding of electrical lines, enhanced heat transfer, fuel storage and higher energy absorption compared to traditional cores.
机译:采用互锁方法制造了碳纤维增强的三维鸡蛋和金字塔形蜂窝状网格芯,它们具有相互连接的空隙空间。研究了由新型3D网格芯制成的全复合夹芯板的面外压缩特性,破坏模式和能量吸收能力。推导了预测鸡蛋和金字塔形蜂窝网格芯的压缩刚度和强度的分析模型。结果表明,与相同密度(10–100 Kg / m3)的轻质方形蜂窝相比,制成的夹心板具有更高的比能量吸收能力。与传统铁芯相比,由于铁芯结构内部空间中的流量增加,电线的嵌入,增强的热传递,燃料存储和更高的能量吸收,新的铁芯设计有望为轻型多功能结构带来新颖的应用。

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