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用于流体自感应驱动的电化学双传感器

Electrochemical Dual Transducer for Fluidic Self-Sensing Actuation.

作者信息

Kuwajima Yu, Seki Yumeta, Yamada Yuhei, Awaki Satoshi, Kamiyauchi Shota, Wiranata Ardi, Okuno Yuto, Shigemune Hiroki, Maeda Shingo

机构信息

Department of Engineering Science and Mechanics, Shibaura Institute of Technology, 3-7-5 Toyosu, Koto-ku, Tokyo 135-8548, Japan.

Department of Electrical Engineering, Shibaura Institute of Technology, 3-7-5 Toyosu, Koto-ku, Tokyo 135-8548, Japan.

出版信息

ACS Appl Mater Interfaces. 2022 Jan 19;14(2):3496-3503. doi: 10.1021/acsami.1c21076. Epub 2022 Jan 7.

Abstract

An electrochemical dual transducer (ECDT) based on a chemical reaction is a new fluidic machine for self-sensing actuation. Recently, incorporating sensors has enhanced the multifunctionality of soft robots with fluidic machines such as pumps or compressors. However, conventional fluidic systems have limitations such as heavy weight, noise, bloat, and complexity. In our previous research, we adopted small-sized, lightweight, and quiet electrohydrodynamic pumps for soft robots. In this paper, we propose a new ECDT by exploring the possibility of an electrohydrodynamic (EHD) pump to sense the flow of the working fluid. The current in the ECDT is proportional to 1/3 of the inflowing velocity. We also clarify its mechanism, mathematical model, range of detectable flow rate, sensitivity factor, relaxation time, response speed, and pumping characteristics. The advantages of the ECDT are their small size, light weight, simple fabrication process, extensibility of the sensing range, and sensitivity. We also demonstrate a suction cup driven by the ECDT, which can detect, hold, and release objects. We expect a bidirectional ECDT will realize a small, multifunctional, and straightforward fluidic system.

摘要

基于化学反应的电化学双传感器(ECDT)是一种用于自感应驱动的新型流体机械。最近,将传感器集成到诸如泵或压缩机等流体机械中,增强了软机器人的多功能性。然而,传统的流体系统存在诸如重量大、噪音大、体积臃肿和结构复杂等局限性。在我们之前的研究中,我们为软机器人采用了小型、轻便且安静的电流体动力泵。在本文中,我们通过探索电流体动力(EHD)泵感知工作流体流动的可能性,提出了一种新型的ECDT。ECDT中的电流与流入速度的三分之一成正比。我们还阐明了其工作原理、数学模型、可检测流速范围、灵敏度因子、弛豫时间、响应速度和泵送特性。ECDT的优点包括体积小、重量轻、制造工艺简单、传感范围可扩展性以及灵敏度高。我们还展示了一种由ECDT驱动的吸盘,它能够检测、抓取和释放物体。我们期望双向ECDT将实现一个小型、多功能且简单的流体系统。

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