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Prediction of Crushing Response for Metal Hexagonal Honeycomb under Quasi-Static Loading

机译:准静态载荷作用下金属六角形蜂窝的破碎响应预测

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摘要

To provide a theoretical basis for metal honeycombs used for buffering and crashworthy structures, this study investigated the out-of-plane crushing of metal hexagonal honeycombs with various cell specifications. The mathematical models of mean crushing stress and peak crushing stress for metal hexagonal honeycombs were predicted on the basis of simplified super element theory. The experimental study was carried out to check the accuracy of mathematical models and verify the effectiveness of the proposed approach. The presented theoretical models were compared with the results obtained from experiments on nine types of honeycombs under quasi-static compression loading in the out-of-plane direction. Excellent correlation has been observed between the theoretical and experimental results.
机译:为为用于缓冲和防撞结构的金属蜂窝提供理论依据,本研究调查了具有不同孔格规格的金属六角形蜂窝的平面外破碎。基于简化的超元理论,预测了金属六边形蜂窝的平均破碎应力和峰值破碎应力的数学模型。进行了实验研究,以检查数学模型的准确性并验证所提出方法的有效性。将所提出的理论模型与在平面外方向上准静态压缩载荷下对九种蜂窝的实验结果进行了比较。在理论和实验结果之间观察到极好的相关性。

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