Soft shape-programmable surfaces by fast electromagnetic actuation of liquid metal networks

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作者
Xinchen Ni
Haiwen Luan
Jin-Tae Kim
Sam I. Rogge
Yun Bai
Jean Won Kwak
Shangliangzi Liu
Da Som Yang
Shuo Li
Shupeng Li
Zhengwei Li
Yamin Zhang
Changsheng Wu
Xiaoyue Ni
Yonggang Huang
Heling Wang
John A. Rogers
机构
[1] Northwestern University,Querrey Simpson Institute for Bioelectronics
[2] Northwestern University,Department of Materials Science and Engineering
[3] Duke University,Department of Mechanical Engineering and Materials Science
[4] Northwestern University,Department of Mechanical Engineering
[5] Duke University,Department of Biostatistics and Bioinformatics
[6] Northwestern University,Department of Civil and Environmental Engineering
[7] Northwestern University,Department of Biomedical Engineering
[8] Northwestern University,Department of Neurological Surgery
[9] Northwestern University,Department of Electrical and Computer Engineering
[10] Northwestern University,Department of Chemistry
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摘要
Low modulus materials that can shape-morph into different three-dimensional (3D) configurations in response to external stimuli have wide-ranging applications in flexible/stretchable electronics, surgical instruments, soft machines and soft robotics. This paper reports a shape-programmable system that exploits liquid metal microfluidic networks embedded in an elastomer matrix, with electromagnetic forms of actuation, to achieve a unique set of properties. Specifically, this materials structure is capable of fast, continuous morphing into a diverse set of continuous, complex 3D surfaces starting from a two-dimensional (2D) planar configuration, with fully reversible operation. Computational, multi-physics modeling methods and advanced 3D imaging techniques enable rapid, real-time transformations between target shapes. The liquid-solid phase transition of the liquid metal allows for shape fixation and reprogramming on demand. An unusual vibration insensitive, dynamic 3D display screen serves as an application example of this type of morphable surface.
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