变形
软机器人
弯曲
机器人
失真(音乐)
变形(气象学)
材料科学
铰链
结构工程
机械工程
弯曲半径
折叠(DSP实现)
计算机科学
工程类
人工智能
复合材料
光电子学
放大器
CMOS芯片
作者
Myoung–Ho Kim,Seunghoon Nam,Minsub Oh,Hoo-Jeong Lee,Bongkyun Jang,Seungmin Hyun
出处
期刊:Soft robotics
[Mary Ann Liebert, Inc.]
日期:2021-08-17
卷期号:9 (3): 486-496
被引量:27
标识
DOI:10.1089/soro.2020.0175
摘要
Geometrically multifunctional structures inspired by nature can address the challenges in the development of soft robotics. A bioinspired structure based on origami and kirigami can significantly enhance the stretchability and reliability of soft robots. This study proposes a novel structure with individual, overlapping units, similar to snake scales that can be used to construct shape-morphing batteries for untethered soft robots. The structure is created by folding well-defined, two-dimensional patterns with cutouts. The folding lines mimic the hinge structure of snakeskin, enabling stable deformations without mechanical damage to rigid cells. The structure realizes multi-axial deformability and a zero Poisson's ratio without off-axis distortion to the loading axis. Moreover, to maximize areal density, the optimal cell shape is designed as a hexagon. The structure is applied to a stretchable Li-ion battery, constructed to form an arrangement of electrically interconnected, hexagonal pouch cells. In situ electrochemical characterization and numerical simulation confirm that the shape-morphing scale battery maintains its performance under dynamic deformation with a 90% stretching ratio and 10-mm-radius bending curve, guaranteeing a long-lasting charging/discharging cycle life during cyclic bending and stretching (exceeding 36,000 cycles). Finally, the shape-morphing energy storage device is applied to movable robots, mimicking crawling and slithering, to demonstrate excellent conformability and deformability.
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