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一种由低压长续航介电弹性体致动器驱动的高升力微型空中机器人。

A High-Lift Micro-Aerial-Robot Powered by Low-Voltage and Long-Endurance Dielectric Elastomer Actuators.

作者信息

Ren Zhijian, Kim Suhan, Ji Xiang, Zhu Weikun, Niroui Farnaz, Kong Jing, Chen Yufeng

机构信息

Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA, 02139, USA.

Department of Chemical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA, 02139, USA.

出版信息

Adv Mater. 2022 Feb;34(7):e2106757. doi: 10.1002/adma.202106757. Epub 2022 Jan 4.

Abstract

Dielectric elastomer actuators (DEAs) are a special class of artificial muscles that have been used to construct animal-like soft robotic systems. However, compared with state-of-the-art rigid actuators such as piezoelectric bimorphs and electromagnetic motors, most DEAs require higher driving voltages, and their power density and lifetime remain substantially lower. These limitations pose significant challenges for developing agile and powered autonomous soft robots. Here, a low-voltage, high-endurance, and power-dense DEA based on novel multiple-layering techniques and electrode-material optimization, is reported. When operated at 400 Hz, the 143 mg DEA generates forces of 0.36 N and displacements of 1.15 mm. This DEA is incorporated into an aerial robot to demonstrate high performance. The robot achieves a high lift-to-weight ratio of 3.7, a low hovering voltage of 500 V, and a long lifetime that exceeds 2 million actuation cycles. With 20 s of hovering time, and position and attitude error smaller than 2.5 cm and 2°, respectively, the robot demonstrates the longest and best-performing flight among existing sub-gram aerial robots. This important milestone demonstrates that soft robots can outperform their state-of-the-art rigid counterparts, and it provides an important step toward realizing power autonomy in soft robotic flights.

摘要

介电弹性体致动器(DEA)是一类特殊的人造肌肉,已被用于构建类动物的软机器人系统。然而,与诸如压电双晶片和电磁电机等先进的刚性致动器相比,大多数DEA需要更高的驱动电压,并且它们的功率密度和寿命仍然低得多。这些限制对开发敏捷且有动力的自主软机器人构成了重大挑战。在此,报道了一种基于新型多层技术和电极材料优化的低电压、高耐久性和高功率密度的DEA。当以400Hz运行时,143mg的DEA产生0.36N的力和1.15mm的位移。这种DEA被集成到一个空中机器人中以展示其高性能。该机器人实现了3.7的高升重比、500V的低悬停电压以及超过200万个驱动周期的长寿命。在20秒的悬停时间内,位置和姿态误差分别小于2.5厘米和2°,该机器人展示了现有亚克级空中机器人中最长且性能最佳的飞行。这一重要里程碑表明软机器人可以超越其先进的刚性同类产品,并且为实现软机器人飞行中的动力自主迈出了重要一步。

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