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Foam-filled energy absorbers with auxetic behaviour for localized impacts

机译:泡沫填充的能量吸收器,具有局部影响的辅助行为

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The paper proposes an innovative concept for energy absorption in case of localized impacts. The concept is based on the contraction of cellular structures with negative Poisson's ratio under impact, which is combined with the energy absorption capability of a foam filler. An experimental assessment was accomplished considering a 3D-printed polymeric hexa-chiral frame filled with open-cell soft polyurethane foam inserts, subjected to quasi-static and dynamic indentation. The energy absorbed by the combination of the auxetic frame and foam is significantly higher than the sum of the energies absorbed by constituent elements tested separately. Based on the experiments, a numerical approach for foam-filled absorbers is developed and validated. Then non-linear models of metallic chiral units are considered in a genetic optimization process, set up to optimize the maximum frame contraction under compression before its failure. Finally, the previously validated numerical approach is applied to the optimized geometries, and it is shown that the foam filler can provide significant enhancement of specific absorbed energy and load uniformity ratio also for frames made of ductile metallic material.
机译:本文提出了一种局部影响的能量吸收的创新概念。该概念基于蜂窝结构的蜂窝结构的收缩,其撞击下的负痘痘的比例,与泡沫填料的能量吸收能力相结合。考虑到填充有开放式细胞软质聚氨酯泡沫插入物的3D印刷聚合物六曲框架进行实验评估,经受准静态和动态凹口。通过扶手框架和泡沫的组合吸收的能量显着高于由分别测试的组成元件吸收的能量的总和。基于实验,开发和验证了泡沫填充吸收剂的数值方法。然后在遗传优化过程中考虑了金属手性单元的非线性模型,设置为在其故障之前优化压缩下的最大帧收缩。最后,将先前验证的数值方法应用于优化的几何形状,并且示出了泡沫填料可以为由延性金属材料制成的框架提供特定吸收能量和负载均匀性的显着增强。

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