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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Topology optimization of anisotropic broadband double-negative elastic metamaterials
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Topology optimization of anisotropic broadband double-negative elastic metamaterials

机译:各向异性宽带双负弹性超材料的拓扑优化

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As the counterpart of electromagnetic and acoustic metamaterials, elastic metamaterials are artificial periodic elastic composite materials offering the possibility to manipulate elastic wave propagation in the subwavelength scale through different mechanisms. For the promising superlensing in the medical ultrasonic detection, double-negative metamaterials possessing the negative effective mass density and elastic modulus simultaneously can be utilized as the ideal superlens for breaking the diffraction limit. In this paper, we present a topology optimization scheme to design the two-dimensional (2D) single-phase anisotropic elastic metamaterials with broadband double-negative effective material properties and demonstrate the superlensing effect at the deep-subwavelength scale. We also discuss the impact of several design parameters adopted in the objective function and constraints on the optimized results. Unlike all previously reported mechanisms, the present optimized structures exhibit the novel quadrupolar or multipolar resonances for the negative effective mass density and negative effective elastic modulus. In addition, negative refraction of the transverse waves in a single-phase material is observed. Most optimized structures in this paper can serve as the anisotropic zero-index metamaterials for the longitudinal or transverse waves at a certain frequency. The cloaking effect is demonstrated for both the longitudinal and transverse waves. Moreover, with the particular constraints in the optimization procedure, a super-anisotropic metamaterial exhibiting the double-negative and hyperbolic dispersions in two principal directions within two different frequency ranges is obtained. The developed optimization scheme provides a robust computational tool for negative-index engineering of elastic metamaterials and may guide the design and optimization of other types of metamaterials, including the electromagnetic and acoustic metamaterials. The unusual properties of our optimized structures can inspire new ideas and novel applications including the low-frequency vibration attenuation, flat lens and ultrasonography for elastic waves.
机译:作为电磁和声学超材料的对应物,弹性超材料是人造的周期性弹性复合材料,它提供了通过不同机制控制亚波长范围内弹性波传播的可能性。为了在医学超声检测中有希望的超透镜,同时具有负有效质量密度和弹性模量的双负超材料可以用作突破衍射极限的理想超透镜。在本文中,我们提出了一种拓扑优化方案,以设计具有宽带双负有效材料特性的二维(2D)单相各向异性弹性超材料,并在深亚波长范围内展示了超透镜效应。我们还将讨论目标函数中采用的几个设计参数和约束对优化结果的影响。与所有先前报道的机理不同,本发明的优化结构对于负的有效质量密度和负的有效弹性模量表现出新颖的四极或多极共振。另外,观察到单相材料中横波的负折射。本文中最优化的结构可以用作一定频率下纵向或横向波的各向异性零折射率超材料。纵波和横波都表现出了隐身效果。此外,在优化过程中受到特定约束的情况下,获得了在两个不同频率范围内在两个主方向上呈现双负和双曲线色散的超各向异性超材料。所开发的优化方案为弹性超材料的负折射率工程提供了强大的计算工具,并可指导其他类型的超材料的设计和优化,包括电磁和声学超材料。我们优化结构的非同寻常的特性可以激发新的想法和新颖的应用,包括低频振动衰减,平板透镜和弹性波超声检查。

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