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Multi-parametric sensitivity analysis of the band structure for tetrachiral acoustic metamaterials

机译:四轮学声学超材料带结构的多参数敏感性分析

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Tetrachiral materials are characterized by a cellular microstructure made by a periodic pattern of stiff rings and flexible ligaments. Their mechanical behaviour can be described by a planar lattice of rigid massive bodies and elastic massless beams. The periodic cell dynamics is governed by a monoatomic structural model, conveniently reduced to the only active degrees-of-freedom. The paper presents an explicit parametric description of the band structure governing the free propagation of elastic waves. By virtue of multiparametric perturbation techniques, sensitivity analyses are performed to achieve an analytical asymptotic approximation of the dispersion functions. The parametric conditions for the existence of full band gaps in the low-frequency range are established. Furthermore, the band gap amplitude is analytically assessed in the admissible parameter range. In tetrachiral acoustic metamaterials, stop bands can be opened by the introduction of intra-ring resonators. Perturbation methods can efficiently deal with the consequent enlargement of the mechanical parameter space. Indeed high-accuracy parametric approximations are achieved for the band structure, enriched by the new optical branches related to the resonator frequencies. In particular, target stop bands in the metamaterial spectrum are analytically designed through the asymptotic solution of inverse spectral problems. (C) 2017 Elsevier Ltd. All rights reserved.
机译:四轮系材料的特征在于通过刚性环和柔性韧带的周期性图案制成的细胞微观结构。它们的力学行为可以通过平面刚性的刚性块状物体和弹性自麻梁来描述。周期性细胞动态受到单原子结构模型的管辖,方便地减少到唯一的积极自由度。本文提出了一种用于控制弹性波的自由传播的带结构的显式参数描述。借助于多造扰动技术,进行敏感性分析以实现分散函数的分析渐近近似。建立了低频范围内存在满带间隙的参数条件。此外,在可允许的参数范围内分析了带隙幅度。在四轮车声超材料中,可以通过引入内部谐振器来打开停止带。扰动方法可以有效地处理机械参数空间的改变。实际上,对于频带结构实现的高精度参数近似,由与谐振器频率相关的新光学分支富集。特别地,通过逆光谱问题的渐近溶液分析设计了超材料谱中的目标停止条。 (c)2017 Elsevier Ltd.保留所有权利。

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