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昆虫尺度的快速移动且超坚固的软体机器人。

Insect-scale fast moving and ultrarobust soft robot.

作者信息

Wu Yichuan, Yim Justin K, Liang Jiaming, Shao Zhichun, Qi Mingjing, Zhong Junwen, Luo Zihao, Yan Xiaojun, Zhang Min, Wang Xiaohao, Fearing Ronald S, Full Robert J, Lin Liwei

机构信息

Tsinghua-Berkeley Shenzhen Institute, Tsinghua University, Shenzhen 518055, China.

Berkeley Sensor and Actuator Center, University of California at Berkeley, Berkeley, CA 94720, USA.

出版信息

Sci Robot. 2019 Jul 31;4(32). doi: 10.1126/scirobotics.aax1594.

Abstract

Mobility and robustness are two important features for practical applications of robots. Soft robots made of polymeric materials have the potential to achieve both attributes simultaneously. Inspired by nature, this research presents soft robots based on a curved unimorph piezoelectric structure whose relative speed of 20 body lengths per second is the fastest measured among published artificial insect-scale robots. The soft robot uses several principles of animal locomotion, can carry loads, climb slopes, and has the sturdiness of cockroaches. After withstanding the weight of an adult footstep, which is about 1 million times heavier than that of the robot, the system survived and continued to move afterward. The relatively fast locomotion and robustness are attributed to the curved unimorph piezoelectric structure with large amplitude vibration, which advances beyond other methods. The design principle, driving mechanism, and operating characteristics can be further optimized and extended for improved performances, as well as used for other flexible devices.

摘要

机动性和稳健性是机器人实际应用的两个重要特性。由聚合物材料制成的软体机器人有潜力同时实现这两个特性。受自然启发,本研究提出了一种基于弯曲单压电晶片结构的软体机器人,其每秒20个身体长度的相对速度是已发表的人工昆虫规模机器人中测得的最快速度。该软体机器人采用了多种动物运动原理,能够承载负载、爬坡,并且具有蟑螂般的坚固性。在承受了约为机器人重量100万倍的成人脚步重量后,该系统存活下来并继续移动。相对较快的运动速度和稳健性归因于具有大幅振动的弯曲单压电晶片结构,这超越了其他方法。该设计原理、驱动机制和操作特性可进一步优化和扩展以提高性能,也可用于其他柔性设备。

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