夹持器
适应性
执行机构
计算机科学
卷须
机制(生物学)
人工智能
工程类
机械工程
物理
生态学
植物
量子力学
生物
作者
Xinyu Guo,Wei Tang,Kecheng Qin,Yiding Zhong,Huxiu Xu,Yang Qu,Zhaoyang Li,Qincheng Sheng,Yidan Gao,Huayong Yang,Jun Zou
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2024-05-08
卷期号:10 (19): eadn6642-eadn6642
被引量:44
标识
DOI:10.1126/sciadv.adn6642
摘要
Existing grippers for unmanned aerial vehicle (UAV) manipulation have persistent challenges, highlighting a need for grippers that are soft, self-adaptive, self-contained, easy to control, and lightweight. Inspired by tendril plants, we propose a class of soft grippers that are voltage driven and based on winding deformation for self-adaptive grasping. We design two types of U-shaped soft eccentric circular tube actuators (UCTAs) and propose using the liquid-gas phase-transition mechanism to actuate UCTAs. Two types of UCTAs are separately cross-arranged to construct two types of soft grippers, forming self-contained systems that can be directly driven by voltage. One gripper inspired by tendril climbers can be used for delicate grasping, and the other gripper inspired by hook climbers can be used for strong grasping. These grippers are ideal for deployment in UAVs because of their self-adaptability, ease of control, and light weight, paving the way for UAVs to achieve powerful manipulation with low positioning accuracy, no complex grasping planning, self-adaptability, and multiple environments.
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