机器人
攀登
地形
海龟(机器人)
计算机科学
移动机器人
磁化
步态
绞盘
模拟
磁场
人工智能
工程类
机械工程
航空航天工程
生态学
物理
生物
生理学
量子力学
作者
Haoran Zheng,Dingnan Rao,Haonan Sun,Shishi Li,Chengqian Zhang,Fanghao Zhou,Liyang Mao,Hao Zhang,Hui Xie,Tiefeng Li
出处
期刊:Small
[Wiley]
日期:2025-06-02
卷期号:21 (31): e2412599-e2412599
被引量:2
标识
DOI:10.1002/smll.202412599
摘要
Animals can respond quickly to environmental stimuli and generate complex deformations. The locomotion modes of turtles vary with changing environments, which inspires the design of bionic robots. Existing turtle-like robots exhibit high movement efficiency and multi-terrain adaptability. However, challenges remain in improving the untethered designs, miniaturization, and response speed of these robots. Herein, a millimeter-scale turtle-like robot through programmable magnetic-assisted 3D printing is proposed. Hinge structures and magnetization distribution design are introduced to mimic the turtle joints. The magnetization distribution can be regulated through 3D printing. Considering that tortoises and sea turtles have different gaits, three magnetization distributions to achieve diagonal and synchronous gaits are designed. In the multi-terrain model, the robot exhibits maneuverability to crawl across sand, grass, gravel, and mountains. Specifically, the robot can climb over a stone wall that is 5.6 times its height and avoid obstacles. The robot is also capable of delivering cargo that weighs 1.2 times its weight along target trajectories. Furthermore, the different magnetization distribution designs enable robots to move separately within the same magnetic field. This independent actuation can be used for multi-robot collaboration.
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