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Mechanical performance of honeycomb filled with circular CFRP tubes

机译:圆形CFRP管填充蜂窝的力学性能。

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Recently, cellular-filled structure has gained popularity due to its evident promotion in energy absorption capacity of absorber. In this study, a new pattern of composited filling structure-honeycomb cells filled with circular tubes (HFCT) has been put forward. Comprehensive experimental investigations have been conducted in terms of ten types of HFCT structures with hollow and different fillers including circular carbon fiber reinforced polymer (CFRP) tubes as well as circular Al tubes in different filling patterns. Detailed mechanical performances on energy absorption, deformation mode and interaction between inside circular CFRP filler and outside hexagonal honeycomb container were determined. The analyses show that, when undergoing axial loading, the HFCT structure not only maintains the same excellent mechanical properties with conventional hollow honeycomb core, but also gains evident promotion in energy absorption when filled in appropriate filling pattern. Obvious filling effect and matching effect were extensively discussed around the kind patterns of filling structures, which have significant influence on HFCT structure's performance. All the achievements prove that the HFCT structure can be considered as a perfect choice in aid to design of energy absorption device. (C) 2017 Elsevier Ltd. All rights reserved.
机译:近年来,由于蜂窝状填充结构在吸收体的能量吸收能力方面的明显提高,因此获得了普及。在这项研究中,提出了一种新的复合填充结构的模式,即用圆管填充的蜂窝状细胞(HFCT)。针对具有空心和不同填充物的十种HFCT结构进行了全面的实验研究,包括圆形碳纤维增强聚合物(CFRP)管以及具有不同填充方式的圆形Al管。确定了详细的力学性能,包括内部圆形CFRP填料与六角形蜂窝状容器之间的能量吸收,变形模式以及相互作用。分析表明,在承受轴向载荷时,HFCT结构不仅保持了与常规空心蜂窝状芯相同的优异机械性能,而且在以适当的填充方式填充时,能量吸收也得到了明显的提升。围绕充填结构的种类模式,广泛讨论了明显的充填效果和匹配效果,这对HFCT结构的性能有重要影响。所有的成就证明,HFCT结构可以被认为是辅助能量吸收装置设计的理想选择。 (C)2017 Elsevier Ltd.保留所有权利。

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