气动执行机构
执行机构
机器人
软机器人
计算机科学
管道(软件)
弯曲
机器人学
夹持器
气动流量控制
机械工程
控制工程
工程类
人工智能
结构工程
作者
Xiaoli Yang,Tao Jin,Shiwei Tian,Jie‐Yu Wang,Sicheng Yi,Yue Wang,Long Li,Yangqiao Lin
出处
期刊:Advanced Science
[Wiley]
日期:2025-04-24
卷期号:12 (25): e2501477-e2501477
被引量:1
标识
DOI:10.1002/advs.202501477
摘要
Abstract Conventional pneumatic soft robots require complex control systems with multiple valves and circuits due to coupled structural and pneumatic dynamics. A strategy is presented to program the pneumatic response characteristics of soft actuators by embedding elastic fibers with tailored materials and pre‐stretch ratios, enabling structurally identical modules to exhibit distinct pressure‐driven responses. A 6 mm‐diameter actuator prototype demonstrates this paradigm, achieving a 2632% load ratio and 225°/s bending speed at a material cost of 9 cents. Crucially, a single pneumatic input suffices for multi‐step actuation—shown in pipeline‐climbing robots, omnidirectional crawlers, and grippers adapting to objects from 10 to 450 g. This fusion of material programming and mechanical intelligence simplifies control architectures while enhancing functionality, offering a scalable path toward deployable soft robotics.
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