Dal Corso F, Tallarico D, Movchan N V, Movchan A B, Bigoni D
DICAM, University of Trento, via Mesiano, 77 38123, Trento, Italy.
EMPA - Swiss Federal Laboratories for Materials Science and Technology, Laboratory for Acoustics/Noise Control, Dübendorf, Switzerland.
Philos Trans A Math Phys Eng Sci. 2019 Oct 21;377(2156):20190101. doi: 10.1098/rsta.2019.0101. Epub 2019 Sep 2.
Small axial and flexural oscillations are analysed for a periodic and infinite structure, constrained by sliding sleeves and composed of elastic beams. A nested Bloch-Floquet technique is introduced to treat the nonlinear coupling between longitudinal and transverse displacements induced by the configurational forces generated at the sliding sleeve ends. The action of configurational forces is shown to play an important role from two perspectives. First, the band gap structure for purely longitudinal vibration is broken so that axial propagation may occur at frequencies that are forbidden in the absence of a transverse oscillation and, second, a flexural oscillation may induce axial resonance, a situation in which the longitudinal vibrations tend to become unbounded. The presented results disclose the possibility of exploiting configurational forces in the design of mechanical devices towards longitudinal actuation from flexural vibrations of small amplitude at given frequency. This article is part of the theme issue 'Modelling of dynamic phenomena and localization in structured media (part 1)'.
对由弹性梁组成、受滑动套筒约束的周期性无限结构进行了小轴向和弯曲振动分析。引入了嵌套布洛赫 - 弗洛凯技术来处理由滑动套筒端部产生的构型力引起的纵向和横向位移之间的非线性耦合。从两个角度表明构型力的作用起着重要作用。第一,纯纵向振动的带隙结构被打破,使得轴向传播可能在没有横向振动时被禁止的频率下发生;第二,弯曲振动可能会引起轴向共振,即纵向振动趋于变得无界的情况。所呈现的结果揭示了在给定频率下利用构型力设计机械设备以从小幅弯曲振动实现纵向驱动的可能性。本文是主题为“结构化介质中动态现象和局域化建模(第1部分)”的一部分。