Symplectic analytical solution for forced vibration of a multilayer plate system

IF 2.8 4区 工程技术 Q1 ACOUSTICS
Yongbin Ma, Qingfeng Cheng, Boping Wang
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引用次数: 0

Abstract

The classical laminate and lattice sandwich plate structure can be simplified into a multilayer plate system, wherein the plate components of the system are continuously joined along the transverse direction by elastic layers and can have different combinations of boundary conditions. A symplectic analytical wave propagation approach is developed for the forced vibration of a system of multiple elastically connected thin plates considering the Kirchhoff thin plate theory. The proposed method overcomes the limitation of the traditional analytical method, wherein the exact vibration field function only exists for a system with all edges of the plate components simply supported. First, the coupled partial differential equations governing the vibration of the multi-plate system are decoupled using a technique based on matrix theory; for decoupled equations, a general “vibration” state is innovatively introduced into the symplectic dual system. Next, the general “vibration” state can be analytically described in symplectic space by solving the symplectic eigenproblem and utilizing wave propagation theory. Finally, by using these analytical wave shapes and satisfying the physical boundary conditions of the system, the forced responses can be analytically calculated. In the numerical examples, the forced transverse vibrations of the double- and three-plate systems are investigated, and the cases with various combinations of boundary conditions are considered. The effectiveness of the present method is validated by comparing the present results with the results from the literature and those calculated using the finite element method. The influence of the elastic layer stiffness and number of plate components on the vibration is also investigated.
多层板系强迫振动的辛解析解
经典的层叠和点阵夹层板结构可以简化为多层板系统,其中系统的板组件沿横向通过弹性层连续连接,并且可以具有不同的边界条件组合。考虑Kirchhoff薄板理论,建立了多弹性连接薄板系统强迫振动的辛解析波传播方法。该方法克服了传统解析方法的局限性,即只有在板构件的所有边缘均为简支的情况下才存在精确的振动场函数。首先,采用基于矩阵理论的方法对控制多板系统振动的耦合偏微分方程进行解耦;对于解耦方程,创新地在辛对偶系统中引入了一般的“振动”状态。其次,通过求解辛特征问题,利用波传播理论,可以在辛空间中解析描述一般的“振动”状态。最后,利用这些解析波形并满足系统的物理边界条件,可以解析计算系统的强迫响应。在数值算例中,研究了双板和三板系统的强迫横向振动,并考虑了不同边界条件组合的情况。通过与文献计算结果和有限元计算结果的比较,验证了本文方法的有效性。研究了弹性层刚度和板构件数目对振动的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.90
自引率
4.30%
发文量
98
审稿时长
15 weeks
期刊介绍: Journal of Low Frequency Noise, Vibration & Active Control is a peer-reviewed, open access journal, bringing together material which otherwise would be scattered. The journal is the cornerstone of the creation of a unified corpus of knowledge on the subject.
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