爬行
执行机构
机器人
软机器人
仿生学
机械工程
材料科学
夹持器
计算机科学
纳米技术
工程类
控制工程
电气工程
人工智能
解剖
生物
作者
Qiping Xu,Kehang Zhang,Chenhang Ying,Huiyu Xie,Jinxin Chen,E Shiju
出处
期刊:Biomimetics
[Multidisciplinary Digital Publishing Institute]
日期:2024-09-06
卷期号:9 (9): 541-541
被引量:9
标识
DOI:10.3390/biomimetics9090541
摘要
The development of a soft crawling robot (SCR) capable of quick folding and recovery has important application value in the field of biomimetic engineering. This article proposes an origami-inspired vacuum-actuated foldable soft crawling robot (OVFSCR), which is composed of entirely soft foldable mirrored origami actuators with a Kresling crease pattern, and possesses capabilities of realizing multimodal locomotion incorporating crawling, climbing, and turning movements. The OVFSCR is characterized by producing periodically foldable and restorable body deformation, and its asymmetric structural design of low front and high rear hexahedral feet creates a friction difference between the two feet and contact surface to enable unidirectional movement. Combining an actuation control sequence with an asymmetrical structural design, the body deformation and feet in contact with ground can be coordinated to realize quick continuous forward crawling locomotion. Furthermore, an efficient dynamic model is developed to characterize the OVFSCR’s motion capability. The robot demonstrates multifunctional characteristics, including crawling on a flat surface at an average speed of 11.9 mm/s, climbing a slope of 3°, carrying a certain payload, navigating inside straight and curved round tubes, removing obstacles, and traversing different media. It is revealed that the OVFSCR can imitate contractile deformation and crawling mode exhibited by soft biological worms. Our study contributes to paving avenues for practical applications in adaptive navigation, exploration, and inspection of soft robots in some uncharted territory.
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