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为机器人定制自修复软泵。

Customizing a self-healing soft pump for robot.

机构信息

State Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University, Hangzhou, China.

出版信息

Nat Commun. 2021 Apr 14;12(1):2247. doi: 10.1038/s41467-021-22391-x.

Abstract

Recent advances in soft materials enable robots to possess safer human-machine interaction ways and adaptive motions, yet there remain substantial challenges to develop universal driving power sources that can achieve performance trade-offs between actuation, speed, portability, and reliability in untethered applications. Here, we introduce a class of fully soft electronic pumps that utilize electrical energy to pump liquid through electrons and ions migration mechanism. Soft pumps combine good portability with excellent actuation performances. We develop special functional liquids that merge unique properties of electrically actuation and self-healing function, providing a direction for self-healing fluid power systems. Appearances and pumpabilities of soft pumps could be customized to meet personalized needs of diverse robots. Combined with a homemade miniature high-voltage power converter, two different soft pumps are implanted into robotic fish and vehicle to achieve their untethered motions, illustrating broad potential of soft pumps as universal power sources in untethered soft robotics.

摘要

软物质的最新进展使机器人能够拥有更安全的人机交互方式和自适应运动,但在开发能够在无约束应用中实现致动、速度、便携性和可靠性之间性能折衷的通用驱动电源方面仍然存在重大挑战。在这里,我们介绍了一类完全柔软的电子泵,它利用电能通过电子和离子迁移机制输送液体。软泵将良好的便携性与出色的致动性能相结合。我们开发了特殊的功能液体,将电致动和自修复功能的独特特性融合在一起,为自修复流体动力系统提供了一个方向。软泵的外观和泵送性能可以定制,以满足各种机器人的个性化需求。结合自制的微型高压电源转换器,将两个不同的软泵植入机器鱼和车辆中,实现它们的无约束运动,这说明了软泵作为无约束软机器人通用电源的广泛潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f872/8046788/224482de2f40/41467_2021_22391_Fig1_HTML.jpg

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