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具有转动惯量的周期性微结构弯曲系统的动态特性

Dynamic characterization of a periodic microstructured flexural system with rotational inertia.

作者信息

Nieves M J, Brun M

机构信息

School of Computing and Mathematics, Keele University, Keele ST5 5BG, UK.

Department of Mechanical, Chemical and Material Engineering, University of Cagliari, Cagliari 09123, Italy.

出版信息

Philos Trans A Math Phys Eng Sci. 2019 Oct 21;377(2156):20190113. doi: 10.1098/rsta.2019.0113. Epub 2019 Sep 2.

Abstract

We consider the propagation of waves in a flexural medium composed of massless beams joining a periodic array of elements, elastically supported and possessing mass and rotational inertia. The dispersion properties of the system are determined and the influence and interplay between the dynamic parameters on the structure of the pass and stop bands are analysed in detail. We highlight the existence of three special dynamic regimes corresponding to a low stiffness in the supports and/or low rotational inertia of the masses; to a high stiffness and/or high rotational inertia regime; and to a transition one where dispersion degeneracies are encountered. In the low-frequency regime, a rigorous asymptotic analysis shows that the structure approximates a continuous Rayleigh beam on an elastic foundation. This article is part of the theme issue 'Modelling of dynamic phenomena and localization in structured media (part 1)'.

摘要

我们考虑波在一种弯曲介质中的传播,该介质由连接周期性排列元件的无质量梁组成,这些元件弹性支撑且具有质量和转动惯量。确定了系统的色散特性,并详细分析了动态参数对通带和阻带结构的影响及相互作用。我们强调存在三种特殊的动态状态,分别对应支撑处低刚度和/或质量的低转动惯量状态;高刚度和/或高转动惯量状态;以及遇到色散简并的过渡状态。在低频状态下,严格的渐近分析表明该结构近似于弹性基础上的连续瑞利梁。本文是主题为“结构化介质中动态现象建模与局域化(第1部分)”的一部分。

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