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Sensing-actuating integrated asymmetric multilayer hydrogel muscle for soft robotics

Yexi Zhou, Yu Zhao, Dazhe Zhao, Xiao Guan, Kaijun Zhang, Yucong Pi, Junwen Zhong

发表年份
2025
引用次数
18
访问权限
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摘要

Achieving autonomously responding to external stimuli and providing real-time feedback on their motion state are key challenges in soft robotics. Herein, we propose an asymmetric three-layer hydrogel muscle with integrated sensing and actuating performances. The actuating layer, made of p(NIPAm-HEMA), features an open pore structure, enabling it to achieve 58% volume shrinkage in just 8 s. The customizable heater allows for efficient programmable deformation of the actuating layer. A strain-responsive hydrogel layer, with a linear response of up to 50% strain, is designed to sense the deformation process. Leveraging these actuating and sensing capabilities, we develop an integrated hydrogel muscle that can recognize lifted objects with various weights or grasped objects of different sizes. Furthermore, we demonstrate a self-crawling robot to showcase the application potential of the hydrogel muscle for soft robots working in aquatic environments. This robot, featuring a modular distributed sensing and actuating layer, can autonomously move forward under closed-loop control based on self-detected resistance signals. The strategy of modular distributed stimuli-responsive sensing and actuating materials offers unprecedented capabilities for creating smart and multifunctional soft robotics.

关键词

Soft roboticsModular designRobotRoboticsArtificial intelligenceProcess (computing)Artificial muscleCrawlingComputer scienceLayer (electronics)

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