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Nonlinear transverse vibrations of angle-ply laminated composite piezoelectric cantilever plate with four-modes subjected to in-plane and out- of-plane excitations

机译:受到平面内和平面外激励的四模角叠层复合压电悬臂板的非线性横向振动

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摘要

In this paper, the nonlinear vibrations of the laminated composite piezoelectric cantilever plate subjected to the transverse and in-plane excitations are investigated. Based on the Reddy's third-order plate theory and von Karman nonlinear strain-displacement relation, the nonlinear partial differential governing equations of motion are established for the laminated composite piezoelectric cantilever plate under combined the transverse and inplane excitations by applying Hamilton's principle. Employing Galerkin's approach, we discretize the continuous nonlinear dynamic equations of motion into the ordinary differential equations with four modes. Substituting the actual geometric and physical parameters of the laminated composite piezoelectric cantilever plate into the governing equation of motion, we use numerical method to investigate the effects of the lay-up parameters and the geometric parameters on the dimensionless natural frequencies of the cantilever plate. The amplitude-frequency response curves and the basin boundary diagram of two coexisting steady-state solutions are plotted for the laminated composite piezoelectric cantilever plate. The nonlinear dynamic responses of the laminated composite piezoelectric cantilever plate under combined the transverse and in-plane excitations are investigated by changing the lay-up parameters, the transverse excitation, the voltage excitation and the in-plane excitation. The periodic, the quasi-periodic, the chaotic motions and the nonlinear stiffness characteristics can be found. The nonlinear dynamic behaviors help us to optimize the structural and physical parameters of the laminated composite piezoelectric cantilever plate under combined the transverse and in-plane excitations.
机译:在本文中,研究了层压复合压电悬臂板在横向和平面激励下的非线性振动。基于Reddy的三阶板理论和von Karman非线性应变-位移关系,利用汉密尔顿原理,在横向和平面激励相结合的基础上,建立了复合压电压电悬臂板的非线性偏微分运动控制方程。利用Galerkin的方法,我们将运动的连续非线性动力学方程离散为具有四个模式的常微分方程。将层合的复合压电悬臂板的实际几何和物理参数代入运动控制方程,我们使用数值方法研究了铺层参数和几何参数对悬臂板无量纲固有频率的影响。绘制了叠层复合压电悬臂板的振幅-频率响应曲线和两种并存稳态解的盆边界图。通过改变叠置参数,横向激励,电压激励和面内激励,研究了复合压电悬臂板在横向和平面激励共同作用下的非线性动力响应。可以找到周期性,准周期性,混沌运动和非线性刚度特性。非线性动力学行为帮助我们在横向和平面激励的共同作用下优化层压复合压电悬臂板的结构和物理参数。

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