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Axial crushing responses of aluminum honeycomb structures filled with elastomeric polyurethane foam

机译:铝合金蜂窝状结构填充弹性聚氨酯泡沫的轴向粉碎响应

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In this study the energy absorption of elastomeric foam-filled aluminum honeycomb under quasi-static compression loading and low velocity impact was experimentally investigated. Commercially available Al honeycomb made of Al5052 H38 filled with elastomeric polyurethane foam was used as the specimens. Pure polyurethane had a shore hardness of 30A and to make it foam, different volume fraction of glass microballoon was added to it and a novel material was synthesized that simultaneously had the properties of elastomers and foams Energy absorption of the specimens were evaluated by different parameters such as peak load, crushing load and absorbed energy. Also, the effective failure mechanisms were fully discussed. The results showed that the addition of polyurethane to the honeycomb cells had no significant effect on energy absorption enhancement. However, the addition of glass microballoon particles to the elastomer considerably raised the maximum load, mean crushing load, and total absorbed energy and unlike conventional filled structures, it had been significantly less deformed and could act as an energy absorber against impact many times.
机译:在这项研究中,通过实验研究了在准静态压缩负荷和低速冲击下进行弹性体泡沫填充铝蜂窝的能量吸收。使用填充有弹性聚氨酯泡沫的Al5052 H38制成的市售Al蜂窝作为标本。纯聚氨酯具有30A的肖氏硬度并使其泡沫,加入不同体积分数的玻璃微量,并合成新的材料,同时具有弹性体的性能,并通过不同的参数评价样品的弹性体的性能和泡沫能量吸收。作为峰值负荷,粉碎负荷和吸收能量。此外,完全讨论了有效的失败机制。结果表明,向蜂窝细胞添加聚氨酯对能量吸收增强没有显着影响。然而,向弹性体添加玻璃微金属颗粒显着提高了最大载荷,平均破碎载荷和总吸收能量,并且与传统的填充结构不同,它显着变形并且可以充当能量吸收器很多次抗冲击器。

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