Analytical solution for free vibration analysis of GPL-RP beam integrated with piezoelectric layers

Tran Quang Hung, T. M. Tu, D. M. Duc
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引用次数: 1

Abstract

This report presents an analytical approach to the natural frequency analysis of a porous beam consisting of a host porous layer reinforced with graphene platelets (GPLs), namely GPL-reinforced porous core, and two piezoelectric outer layers. In the modelling, symmetric distributions of both porosity and GPLs in the core are supposed. The effective mechanical properties of the GPL-reinforced porous core are estimated by Halpin–Tsai model and the rule of mixture. The electric potential in each piezoelectric layer is assumed to vary linearly across its thickness. Two types of electrical boundary conditions, which are open- and closed-circuits, are considered for the free surfaces of the piezoelectric layers. Parabolic shear deformation beam theory associated with Hamilton’s principle is adopted to derive the governing equations of the free vibration. Afterwards these equations are solved analytically by Navier’s solution. Comparative and comprehensive studies are carried out to examine the accuracy and effects of parameters and conditions, such as GPL weight fraction, porosity coefficient, and electrical boundary conditions on the natural frequencies of the beam.
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压电层集成GPL-RP梁自由振动分析的解析解
本文提出了一种分析方法来分析由石墨烯片增强多孔层(即石墨烯增强多孔芯)和两个压电外层组成的多孔梁的固有频率。在模拟中,假设孔隙度和gpl在岩心中的对称分布。采用Halpin-Tsai模型和混合规律对gpl增强多孔岩心的有效力学性能进行了估计。假定每个压电层的电势沿其厚度呈线性变化。考虑了压电层自由表面的开路和闭环两种电边界条件。采用抛物线剪切变形梁理论结合哈密顿原理,推导了自由振动的控制方程。然后用纳维尔解解析求解这些方程。进行了比较和全面的研究,以检查参数和条件的准确性和影响,例如GPL重量分数,孔隙率系数和电边界条件对光束的固有频率。
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