材料科学
磁流变液
共形矩阵
可控性
复合材料
执行机构
机械工程
智能材料
变硬
人工肌肉
可穿戴计算机
织物
软机器人
弯曲
复合数
刚度
拉挤
计算机科学
3D打印
充气的
磁场
气动人工肌肉
气动执行机构
纳米技术
抗弯刚度
仿生学
弹性(物理)
工作(物理)
各向同性
弹性体
结构工程
生物医学工程
同心的
触觉技术
帕利烯
作者
Jun‐Hong Pu,Haiqiong Li,Jin Liu,Ke Li,Xiaoming Tao
出处
期刊:Nature
[Nature Portfolio]
日期:2025-11-05
卷期号:647 (8089): 375-382
被引量:3
标识
DOI:10.1038/s41586-025-09706-4
摘要
Abstract Fibrous materials that provide reversible actuation 1,2 or adapt mechanical properties 3,4 in response to external stimuli hold great promise for smart textiles 5 , soft robotics 6 and wearable technologies 7 . Although considerable progress has been made in creating fibrous materials responsive to scalar stimuli such as voltage 8 , temperature 6 , humidity 2 and ion concentration 9 , these technologies often lack directional controllability and functional diversity 10–14 . Here we report a class of vector-stimuli-responsive magnetorheological fibrous materials, guided by our engineering model integrating the structural mechanics of textiles with the magnetics of soft magnetic materials. We mass-produced soft magnetic polymer composite fibres with optimized mechanical and magnetic properties, which we then assembled into concentric helical yarns. These yarns exhibited pronounced bending and stiffening properties controlled by the direction and magnitude of magnetic fields, allowing for customized fabrics with various actuation and stiffening functionalities. We demonstrated innovative smart textiles derived from those fabrics, including an active ventilation fabric for personal moisture management, an integrated conformable gripper for handling objects of varying shapes and stiffness, and a compact remote-controllable haptic finger glove that replicates the sensation of fabric hardness and smoothness. Our work provides insights into stimuli-responsive fibrous materials, elevating them from scalar to sophisticated vector control, heralding an era of smart textile innovation.
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