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作为宽带电磁波吸收体的机械超材料:研究几何参数与电磁响应之间的关系。

Mechanical metamaterials as broadband electromagnetic wave absorbers: investigating relationships between geometrical parameters and electromagnetic response.

作者信息

Lim Dahyun Daniel, Lee Sangryun, Lee Jeong-Ho, Choi Wonjoon, Gu Grace X

机构信息

Department of Mechanical Engineering, University of California, Berkeley, CA 94720, USA.

Division of Mechanical and Biomedical Engineering, Ewha Womans University, Seoul 03760, South Korea.

出版信息

Mater Horiz. 2024 May 20;11(10):2506-2516. doi: 10.1039/d3mh01959d.

Abstract

The utilization of low-density and robust mechanical metamaterials rises as a promising solution for multifunctional electromagnetic wave absorbers due to their structured porous structures, which facilitates impedance matching and structural absorption. However, the various geometrical parameters involved in constructing these metamaterials affect their electromagnetic response, necessitating a comprehensive understanding of underlying absorbing mechanisms. Through experimentally validated numerical analysis, this study delves into the influence of geometrical factors on the electromagnetic response of representative low-density, high strength mechanical metamaterials, namely octet-truss and octet-foam. By juxtaposing electromagnetic response under varying volume fractions, cell lengths, and multilayer configurations of octet-truss and octet-foam, distinct absorption mechanisms emerge as geometrical parameters evolve. These mechanisms encompass diminished reflection owing to porous structures, effective medium approximations within subwavelength limits, and transmission-driven or reflection-driven phenomena originating from the interplay of open- and closed-cell structures. Through analyses on these mechanical metamaterials, we demonstrate the viability of employing them as tunable yet scalable structures that are lightweight, robust, and broadband electromagnetic wave absorption.

摘要

由于其结构化的多孔结构有助于实现阻抗匹配和结构吸收,低密度且坚固的机械超材料作为多功能电磁波吸收器的一种有前景的解决方案而受到越来越多的关注。然而,构建这些超材料所涉及的各种几何参数会影响其电磁响应,因此有必要全面了解其潜在的吸收机制。通过经过实验验证的数值分析,本研究深入探讨了几何因素对代表性的低密度、高强度机械超材料(即八面体桁架和八面体泡沫)电磁响应的影响。通过对比八面体桁架和八面体泡沫在不同体积分数、单元长度和多层配置下的电磁响应,随着几何参数的变化,出现了不同的吸收机制。这些机制包括由于多孔结构导致的反射减弱、亚波长范围内的有效介质近似,以及由开孔和闭孔结构相互作用产生的传输驱动或反射驱动现象。通过对这些机械超材料的分析,我们证明了将它们用作可调谐且可扩展的结构的可行性,这些结构具有轻质、坚固和宽带电磁波吸收的特性。

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