利用指数剪切变形理论改进电流变芯厚夹层板线性振动的高阶分析

M. Keshavarzian, M. Najafizadeh, K. Khorshidi, P. Yousefi, M. Alavi
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引用次数: 0

摘要

本文利用指数剪切变形理论研究了含电流变液芯的多层厚夹层板的自由振动特性。首次将指数剪切变形理论应用于工作面,将基于第二种Frostig模型的位移场应用于岩心。根据哈密顿原理推导了控制方程和边界条件。利用Navier方法求解特征值,实现了闭型解。重点研究了电场大小、几何纵横比和内质网芯层厚度对夹层板动态特性的影响。当施加电场时,电流变材料的流变特性,如粘度、塑性和弹性可能会改变。当施加电场时,系统的阻尼更有效。研究了固有频率和损耗因子对夹层板动力特性的影响。夹层板固有频率增大,模态损耗因子减小。随着ER层厚度的增加,夹层板的固有频率降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved High-order Analysis of Linear Vibrations of a Thick Sandwich Panel With an Electro-rheological Core by Using Exponential Shear Deformation Theory
In In this paper, the behavior of free vibrations of the thick sandwich panel with multi-layer face sheets and an electrorheological (ER) fluid core using Exponential Shear Deformation Theory were investigated. For the first time, Exponential shear deformation theory is used for the face sheets while the Displacement field based on the second Frostig's model is used for the core. The governing equations and the boundary conditions are derived by Hamilton’s principle. Closed form solution is achieved using the Navier method and solving the eigenvalues. Primary attention is focused on the effects of electric field magnitude, geometric aspect ratio,and ER core layer thickness on the dynamic characteristics of the sandwich plate. The rheological property of an ER material, such as viscosity, plasticity, and elasticity may be changed when applying an electric field. When an electric field is applied, the damping of the system is more effective. The effects of the natural frequencies and loss factors on the dynamic behaviorof the sandwich plate are studied.the natural frequency of the sandwich plate increases and the modal loss factor decreases. With increasing the thickness of the ER layer, the natural frequencies of the sandwich plate are decreased.
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