人工肌肉
材料科学
碳纳米管
弹性体
可控性
极限抗拉强度
复合材料
执行机构
纤维
纳米技术
计算机科学
人工智能
数学
应用数学
作者
Guang Yang,Lizhong Dong,Ming Ren,Bo Cui,Xiaojie Yuan,Xiaobo Wang,Yuxin Li,Wei Li,Guanlong Qiao,Yunfeng Shao,Weiwei Li,Xiaona Wang,Panpan Xu,Hongbin Fang,Jiangtao Di,Qingwen Li
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-07-16
卷期号:24 (31): 9608-9616
标识
DOI:10.1021/acs.nanolett.4c02239
摘要
Fibers of liquid crystal elastomers (LCEs) as promising artificial muscle show ultralarge and reversible contractile strokes. However, the contractile force is limited by the poor mechanical properties of the LCE fibers. Herein, we report high-strength LCE fibers by introducing a secondary network into the single-network LCE. The double-network LCE (DNLCE) shows considerable improvements in tensile strength (313.9%) and maximum actuation stress (342.8%) compared to pristine LCE. To facilitate the controllability and application, a coiled artificial muscle fiber consisting of DNLCE-coated carbon nanotube (CNT) fiber is prepared. When electrothermally driven, the artificial muscle fiber outputs a high actuation performance and programmable actuation. Furthermore, by knitting the artificial muscle fibers into origami structures, an intelligent gripper and crawling inchworm robot have been demonstrated. These demonstrations provide promising application scenarios for advanced intelligent systems in the future.
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