Local-to-non-local transition laws for stiffness-tuneable monoatomic chains preserving springs mass.

IF 4.3 3区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences Pub Date : 2024-09-23 Epub Date: 2024-08-12 DOI:10.1098/rsta.2024.0037
Flavia Guarracino, Massimiliano Fraldi, Nicola M Pugno
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Abstract

Recently, non-local configurations have been proposed by adding beyond nearest neighbour couplings among elements in lattices to obtain roton-like dispersion relations and phase and group velocities with opposite signs. Even though the introduction of non-local elastic links in metamaterials has unlocked unprecedented possibilities, literature models and prototypes seem neither to provide criteria to compare local and non-local lattices nor to discuss any related rules governing the transition between the two configurations. A physically reasonable principle that monoatomic one-dimensional chains must obey to pass from single- to multi-connected systems is here proposed through a mass conservation law for elastic springs thereby introducing a suitable real dimensionless parameter [Formula: see text] to tune stiffness distribution. Therefore, the dispersion relations as a function of [Formula: see text] and of the degree of non-locality [Formula: see text] are derived analytically, demonstrating that the proposed principle can be rather interpreted as a general mechanical consistency condition to preserve proper dynamics, involving the spring-to-bead mass ratio. Finally, after discussing qualitative results and deriving some useful inequalities, numerical simulations and two-dimensional FFTs are performed for some paradigmatic examples to highlight key dynamics features exhibited by chains with finite length as the parameters [Formula: see text] and [Formula: see text] vary.This article is part of the theme issue 'Current developments in elastic and acoustic metamaterials science (Part 2)'.

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保持弹簧质量的刚度可调单原子链的局部到非局部过渡定律
最近,有人提出了非局部构型,即在晶格中的元素之间增加近邻耦合之外的耦合,从而获得类似于罗顿的色散关系以及符号相反的相位和群速度。尽管在超材料中引入非局部弹性联系开启了前所未有的可能性,但文献模型和原型似乎既没有提供比较局部和非局部晶格的标准,也没有讨论这两种构型之间过渡的相关规则。本文通过弹性弹簧的质量守恒定律,提出了单原子一维链从单连接系统过渡到多连接系统必须遵守的物理合理原则,从而引入了一个合适的实际无量纲参数[公式:见正文]来调整刚度分布。因此,作为[公式:见正文]和非局部性程度[公式:见正文]函数的分散关系是通过分析推导得出的,这表明所提出的原则可以解释为保持适当动态的一般机械一致性条件,涉及弹簧与珠子的质量比。最后,在讨论了定性结果并推导出一些有用的不等式之后,对一些典型例子进行了数值模拟和二维 FFT,以突出有限长度链在参数[公式:见正文]和[公式:见正文]变化时表现出的关键动力学特征。
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来源期刊
CiteScore
9.30
自引率
2.00%
发文量
367
审稿时长
3 months
期刊介绍: Continuing its long history of influential scientific publishing, Philosophical Transactions A publishes high-quality theme issues on topics of current importance and general interest within the physical, mathematical and engineering sciences, guest-edited by leading authorities and comprising new research, reviews and opinions from prominent researchers.
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