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基于水雷折纸的管状机械超材料的扭转

Twist of Tubular Mechanical Metamaterials Based on Waterbomb Origami.

作者信息

Feng Huijuan, Ma Jiayao, Chen Yan, You Zhong

机构信息

Key Laboratory of Mechanism Theory and Equipment Design of Ministry of Education, Tianjin University, Tianjin, 300072, China.

School of Mechanical Engineering, Tianjin University, Tianjin, 300072, China.

出版信息

Sci Rep. 2018 Jun 22;8(1):9522. doi: 10.1038/s41598-018-27877-1.

Abstract

Origami-inspired mechanical metamaterials have recently drawn increasing attention since their flexible mechanical performance has been greatly enhanced by introducing origami patterns to the thin-shell structures. As a typical origami pattern, the waterbomb tube could be adopted to the design of mechanical metamaterials. However, existing designs predominantly make use of the radial expansion/contraction motion of the structure, thereby limiting its full potential to be explored. Here we report a twist motion of tubular mechanical metamaterials based on waterbomb origami that is previously undiscovered. We demonstrate through a detailed kinematic analysis that the initial twist is a rigid-origami motion if the corresponding row of the tube under twist is fully squeezed with both line and plane symmetry, whereas all the subsequent twist motion requires material deformation. The twist angle per axial strain and its relationship with the geometrical parameters of the tube are revealed. Experimental results show the enhancement in stiffness of the tube with the occurrence of the continuous twist motion. We envisage that this finding could greatly expand the application of the waterbomb tube in the design of origami metamaterials with programmable and tuneable mechanical properties.

摘要

受折纸启发的机械超材料最近越来越受到关注,因为通过在薄壳结构中引入折纸图案,它们的柔性机械性能得到了极大提升。作为一种典型的折纸图案,水雷管可用于机械超材料的设计。然而,现有的设计主要利用结构的径向膨胀/收缩运动,从而限制了其全部潜力的挖掘。在此,我们报告了一种基于水雷折纸的管状机械超材料的扭转运动,这是此前未被发现的。我们通过详细的运动学分析表明,如果扭转时管的相应排被线对称和平面对称完全挤压,初始扭转是一种刚性折纸运动,而所有后续的扭转运动都需要材料变形。揭示了每轴向应变的扭转角度及其与管几何参数的关系。实验结果表明,随着连续扭转运动的出现,管的刚度有所增强。我们设想,这一发现可极大地扩展水雷管在具有可编程和可调机械性能的折纸超材料设计中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e963/6015070/47c7a448864d/41598_2018_27877_Fig1_HTML.jpg

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