执行机构
马朗戈尼效应
材料科学
软机器人
聚电解质
智能材料
机械能
机械工程
机器人学
能量收集
纳米技术
能量(信号处理)
功率(物理)
声学
机器人
机械
计算机科学
人工智能
复合材料
工程类
物理
聚合物
量子力学
对流
作者
Xianze Yin,Shuyan He,Xinming Fu,Xiaoshuang Xiong,Yiheng Song,Qiang Zhao
标识
DOI:10.1002/adma.202407560
摘要
Abstract Smart actuators hold great potential in soft robotics and sensors, but their movement at the fluid interface is less understood and controlled, hindering their performances and applications in complicated fluids. Here an ethanol‐containing polyelectrolyte actuator is prepared that demonstrates excellent actuating performance via the Marangoni effect. These actuators exhibit enduring (17 min), repeatable (50 cycles), and autonomous motion on the water surface. More importantly, the motion of actuators are dependent on their shapes. Polygonal actuators with more edges exhibit round motion attached to walls of containers, while the actuators with few edges move randomly. On the basis of this property, the circular actuators can pass through pipe bends with S‐shaped complex geometry. These unique advantages lend the actuators to successful applications in wireless sensing (standard 0–5 V level signals) for locating obstructions inside invisible pipes and continuous energy harvesting (7700 nC per cycle) for micro mechanical energy.
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