Madine K H, Colquitt D J
Department of Mathematical Sciences, University of Liverpool, Liverpool, UK.
Department of Materials Engineering, IPHD Program, National Tsing Hua University, Hsinchu City, Taiwan.
Philos Trans A Math Phys Eng Sci. 2024 Sep 23;382(2279):20230358. doi: 10.1098/rsta.2023.0358. Epub 2024 Aug 12.
This paper presents a study of the perpendicular gyroscope, which is formed of two orthogonal beams, a flexural plate and a gyroscope. Two sets of chiral-torsional boundary conditions are derived to analytically model the dynamic effects of the gyroscope while taking into account the broken symmetries of the system. The perpendicular junction causes the coupling of the compressional, flexural and torsional displacements in the system. This complex behaviour is accounted for with a comprehensive set of kinematic and dynamic junction conditions. Modal analysis demonstrates the fully coupled system and reveals how the spinning gyroscope induces dynamic chiral Chladni patterns in the plate.This article is part of the theme issue 'Current developments in elastic and acoustic metamaterials science (Part 2)'.
本文介绍了一种由两个正交梁、一个挠曲板和一个陀螺仪组成的垂直陀螺仪的研究。推导了两组手性扭转边界条件,以便在考虑系统对称性破缺的情况下,对陀螺仪的动态效应进行解析建模。垂直连接导致系统中压缩、挠曲和扭转位移的耦合。这种复杂行为通过一套全面的运动学和动态连接条件来解释。模态分析展示了完全耦合的系统,并揭示了旋转的陀螺仪如何在板中诱导出动态手性克拉德尼图案。本文是主题特刊“弹性和声学超材料科学的当前发展(第2部分)”的一部分。