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A numerical study of bioinspired nacre-like composite plates under blast loading

机译:爆炸载荷下仿生珍珠质复合板的数值研究

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摘要

In this paper, a multi-layered composite inspired by the hierarchical structure of nacre and made of layers of aluminium alloy AA 7075 bonded with toughened epoxy resin is introduced for blast resistant applications. The performance of the proposed nacre-like 3.3-mm and 5.4-mm thick composite plates, made of 1.1-mm thick AA 7075 layers, under localised impulsive loading was numerically studied. The epoxy material was modelled using user-defined interface cohesive elements that properly take into account both strength and toughness enhancements under compression. As compared to bulk plates, the improvement in blast resistance performance was numerically observed in the nacre-like plates, which required larger loads to reach the onset of failure. In addition, a reduction of the peak velocity and maximum deflection of the back face was observed for the nacre-like plates. This improvement is explained by the hierarchical structure facilitating a globalized energy absorption by inter-layer interlocking, delamination and friction.
机译:在本文中,介绍了一种多层复合材料,该复合材料受珍珠层的分层结构启发,由铝合金AA 7075层与增韧环氧树脂粘合而成,用于防爆应用。数值研究了拟议的由1.1毫米厚的AA 7075层制成的珍珠母状3.3毫米和5.4毫米厚的复合板在局部脉冲载荷下的性能。使用用户定义的界面内聚元素对环氧材料进行建模,该元素适当考虑了压缩下强度和韧性的提高。与散装板相比,在珍珠质板中数值观察到了抗爆炸性能的提高,需要更大的载荷才能达到破坏的起点。另外,对于珍珠质样板观察到峰值速度的减小和背面的最大挠度。这种改进可以通过分层结构来解释,该分层结构通过层间互锁,分层和摩擦来促进全局能量吸收。

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