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Analysis of mechanical behaviors of waterbomb thin-shell structures under quasi-static load

Lijuan Zhao, Zuen Shang, Tianyi Zhang, Zhan Liu, Liguo Han, Chongwang Wang

发表年份
2021
引用次数
5
访问权限
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摘要

Waterbomb structures are origami-inspired deformable structural components used in new types of robots. They have a unique radially deployable ability that enables robots to better adapt to their environment. In this paper, we propose a series of new waterbomb structures with square, rectangle, and parallelogram base units. Through quasi-static axial and radial compression experiments and numerical simulations, we prove that the parallelogram waterbomb structure has a twist displacement mode along the axial direction. Compared with the square waterbomb structure, the proposed optimal design of the parallelogram waterbomb structure reduces the critical axial buckling load-to-weight ratio by 55.4% and increases the radial stiffness-to-weight ratio by 67.6%. The significant increase in the radial stiffness-to-weight ratio of the waterbomb structure and decrease in the critical axial buckling load-to-weight ratio make the proposed origami pattern attractive for practical robotics applications.

关键词

ParallelogramRectangleStiffnessBucklingSquare (algebra)Shell (structure)Structural engineeringDisplacement (psychology)Materials scienceAspect ratio (aeronautics)

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