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一种具有磁性液态金属芯的超拉伸电开关纤维,用于远程磁驱动。

An Ultrastretchable Electrical Switch Fiber with a Magnetic Liquid Metal Core for Remote Magnetic Actuation.

作者信息

Hong Kyeongmin, Choe Minjae, Kim Seoyeon, Lee Hye-Min, Kim Byung-Joo, Park Sungjune

机构信息

Department of Polymer-Nano Science and Technology, Department of Nano Convergence Engineering Jeonbuk National University, Jeonju 54896, Korea.

R&D Division, Korea Institute of Carbon Convergence Technology, Jeonju 54853, Korea.

出版信息

Polymers (Basel). 2021 Jul 22;13(15):2407. doi: 10.3390/polym13152407.

Abstract

In this work we describe a soft and ultrastretchable fiber with a magnetic liquid metal (MLM) core for electrical switches used in remote magnetic actuation. MLM was prepared by removing the oxide layer on the liquid metal and subsequent mixing with magnetic iron particles. We used SEBS (poly[styrene-b-(ethylene-co-butylene)-b-styrene]) and silicone to prepare stretchable elastic fibers. Once hollow elastic fibers form, MLM was injected into the core of the fiber at ambient pressure. The fibers are soft (Young's modulus of 1.64.4 MPa) and ultrastretchable (elongation at break of 6005000%) while maintaining electrical conductivity and magnetic property due to the fluidic nature of the core. Magnetic strength of the fibers was characterized by measuring the maximum effective distance between the magnet and the fiber as a function of iron particle concentration in the MLM core and the polymeric shell. The MLM core facilitates the use of the fiber in electrical switches for remote magnetic actuation. This ultrastretchable and elastic fiber with MLM core can be used in soft robotics, and wearable and conformal electronics.

摘要

在这项工作中,我们描述了一种用于远程磁驱动的电气开关的、具有磁性液态金属(MLM)芯的柔软且超可拉伸纤维。通过去除液态金属上的氧化层并随后与磁性铁颗粒混合来制备MLM。我们使用SEBS(聚[苯乙烯 - b -(乙烯 - 共 - 丁烯) - b - 苯乙烯])和硅酮来制备可拉伸弹性纤维。一旦形成中空弹性纤维,就在环境压力下将MLM注入纤维芯中。由于芯的流体性质,这些纤维很柔软(杨氏模量为1.64.4 MPa)且超可拉伸(断裂伸长率为6005000%),同时保持导电性和磁性。通过测量磁体与纤维之间的最大有效距离作为MLM芯和聚合物外壳中铁颗粒浓度的函数,来表征纤维的磁强度。MLM芯便于将该纤维用于远程磁驱动的电气开关。这种具有MLM芯的超可拉伸弹性纤维可用于软机器人技术以及可穿戴和贴合式电子设备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05c2/8348917/7812c0e9197d/polymers-13-02407-g001.jpg

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