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用于可重构电磁系统的新型可变换剪纸超材料。

A new class of transformable kirigami metamaterials for reconfigurable electromagnetic systems.

作者信息

Yang Yunfang, Vallecchi Andrea, Shamonina Ekaterina, Stevens Christopher J, You Zhong

机构信息

Department of Engineering Science, University of Oxford, Parks Road, Oxford, OX1 3PJ, UK.

出版信息

Sci Rep. 2023 Jan 21;13(1):1219. doi: 10.1038/s41598-022-27291-8.

Abstract

The rapid development of radio frequency (RF) components requires smart multifunctional materials that can adapt their physical shapes and properties according to the environment. While most current reconfigurable systems provide limited flexibility with high manufacturing cost, this research proposes to harness the transformable properties of kirigami-inspired multistable mechanical metasurfaces that can repeatedly deform and lock into different configurations to realize a novel class of low-cost reconfigurable electromagnetic structures with a broad design space. The metasurfaces are formed by designing kinematic-based unit cells with metallised coating that can provide adjustable resonant electromagnetic (EM) properties while rotating with respect to each other. Tailoring the cut length and geometry parameters of the patterns, we demonstrate programming of the topologies and shapes of different configurations. The influence of critical parameters on the structural multistability is illustrated by means of both a simplified energy model and finite element simulations. As examples of the reconfigurable electromagnetic devices that can be realized, we report the development of a tuneable half-wave dipole and two frequency selective surface (FSS) designs featuring isotropic and anisotropic responses. While the kirigami dipole can be tuned by mechanically stretching its arms, the FSSs exhibit distinct transmittance and reflectance spectra in each of the kirigami patterns stable states. The functionality of these kirigami devices is validated both by full-wave EM simulations and experiments. The proposed transformable structures can be mechanically actuated to tune the EM response in frequency or induce anisotropies for wave propagation.

摘要

射频(RF)组件的快速发展需要智能多功能材料,这类材料能够根据环境改变其物理形状和特性。虽然目前大多数可重构系统灵活性有限且制造成本高昂,但本研究提出利用受kirigami启发的多稳态机械超表面的可变换特性,这种超表面能够反复变形并锁定成不同构型,以实现一类具有广阔设计空间的新型低成本可重构电磁结构。超表面通过设计带有金属涂层的基于运动学的单元结构形成,这些单元结构在相对旋转时能够提供可调节的谐振电磁(EM)特性。通过调整图案的切割长度和几何参数,我们展示了不同构型的拓扑结构和形状的编程。借助简化能量模型和有限元模拟说明了关键参数对结构多稳态的影响。作为可实现的可重构电磁器件的示例,我们报告了一种可调谐半波偶极子以及两种具有各向同性和各向异性响应的频率选择表面(FSS)设计的开发情况。kirigami偶极子可通过机械拉伸其臂进行调谐,而FSS在kirigami图案的每个稳定状态下都呈现出独特的透射率和反射率光谱。这些kirigami器件的功能通过全波电磁模拟和实验得到了验证。所提出的可变换结构可通过机械驱动来调节频率上的电磁响应或诱导波传播的各向异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fab/9867698/7cf9a06aebf3/41598_2022_27291_Fig1_HTML.jpg

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