变形
执行机构
人工肌肉
软机器人
模块化设计
材料科学
计算机科学
张拉整体
仿生材料
纳米技术
仿生学
自由度(物理和化学)
3d打印机
机械工程
生物系统
人工智能
工程类
结构工程
物理
量子力学
生物
操作系统
作者
Zhiming Hu,Yanlin Zhang,Hanqing Jiang,Jiu‐an Lv
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2023-06-23
卷期号:9 (25): eadh3350-eadh3350
被引量:85
标识
DOI:10.1126/sciadv.adh3350
摘要
Biological tubular actuators show diverse deformations, which allow for sophisticated deformations with well-defined degrees of freedom (DOF). Nonetheless, synthetic active tubular soft actuators largely only exhibit few simple deformations with limited and undesignable DOF. Inspired by 3D fibrous architectures of tubular muscular hydrostats, we devised conceptually new helical-artificial fibrous muscle structured tubular soft actuators (HAFMS-TSAs) with locally tunable molecular orientations, materials, mechanics, and actuation via a modular fabrication platform using a programmable filament winding technique. Unprecedentedly, HAFMS-TSAs can be endowed with 11 different morphing modes through programmable regulation of their 3D helical fibrous architectures. We demonstrate a single "living" artificial plant rationally structured by HAFMS-TSAs exhibiting diverse photoresponsive behaviors that enable adaptive omnidirectional reorientation of its hierarchical 3D structures in the response to environmental irradiation, resembling morphing intelligence of living plants in reacting to changing environments. Our methodology would be significantly beneficial for developing sophisticated soft actuators with designable and tunable DOF.
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