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基于剪纸的各向异性质量密度弹性超材料用于亚波长弯曲波控制。

Kirigami-based Elastic Metamaterials with Anisotropic Mass Density for Subwavelength Flexural Wave Control.

机构信息

Department of Aeronautics and Astronautics, University of Washington, Seattle, WA, 98195, USA.

School of Aerospace Engineering, Beijing Institute of Technology, Beijing, 100081, People's Republic of China.

出版信息

Sci Rep. 2018 Jan 11;8(1):483. doi: 10.1038/s41598-017-18864-z.

Abstract

A novel design of an elastic metamaterial with anisotropic mass density is proposed to manipulate flexural waves at a subwavelength scale. The three-dimensional metamaterial is inspired by kirigami, which can be easily manufactured by cutting and folding a thin metallic plate. By attaching the resonant kirigami structures periodically on the top of a host plate, a metamaterial plate can be constructed without any perforation that degrades the strength of the pristine plate. An analytical model is developed to understand the working mechanism of the proposed elastic metamaterial and the dispersion curves are calculated by using an extended plane wave expansion method. As a result, we verify an anisotropic effective mass density stemming from the coupling between the local resonance of the kirigami cells and the global flexural wave propagations in the host plate. Finally, numerical simulations on the directional flexural wave propagation in a two-dimensional array of kirigami metamaterial as well as super-resolution imaging through an elastic hyperlens are conducted to demonstrate the subwavelength-scale flexural wave control abilities. The proposed kirigami-based metamaterial has the advantages of no-perforation design and subwavelength flexural wave manipulation capability, which can be highly useful for engineering applications including non-destructive evaluations and structural health monitoring.

摘要

提出了一种具有各向异性质量密度的弹性超材料的新颖设计,以在亚波长尺度上操纵弯曲波。这种三维超材料的灵感来自折纸,通过切割和折叠薄金属板即可轻松制造。通过在主板的顶部周期性地附着谐振折纸结构,可以构造出不会降低原始板强度的穿孔超材料板。开发了一个分析模型来理解所提出的弹性超材料的工作机制,并通过扩展的平面波展开方法计算色散曲线。结果,我们验证了各向异性有效质量密度源于折纸单元的局部共振与主板中全局弯曲波传播之间的耦合。最后,通过数值模拟研究了二维折纸超材料阵列中的定向弯曲波传播以及通过弹性超透镜进行的超分辨率成像,以证明亚波长弯曲波控制能力。所提出的基于折纸的超材料具有无穿孔设计和亚波长弯曲波操纵能力,这对于包括无损评估和结构健康监测在内的工程应用非常有用。

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