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Nonlinear dynamics and stability analysis of piezo-visco medium nanoshell resonator with electrostatic and harmonic actuation

机译:带静电和谐波激励的压电-粘滞介质纳米壳谐振器的非线性动力学和稳定性分析

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In this paper, nonlinear dynamics, vibration and stability analysis of piezo-visco medium nanoshell resonator (PVM-NSR) based on functionally graded (FG) cylindrical nanoshell integrated with two piezoelectric layers subjected to visco-pasternak medium, electrostatic and harmonic excitations is investigated. Nonclassical method of the electro-elastic Gurtin-Murdoch surface/interface theory with von-Karman-Donnell's shell model as well as Hamilton's principle, the assumed mode method combined with Lagrange-Euler's are considered. Complex averaging method combined with arc-length continuation is used to achieve a numerical solution for the steady state vibrations of the system. The stability analysis of the steady state response is performed. The parametric studies such as the effects of different boundary conditions, different geometric ratios, structural parameters, electrostatic and harmonic excitation on the nonlinear frequency response and stability analysis are studied. The results indicate that near the natural frequency of the nanoshell, it will lead to resonance and will have large motion amplitude and near the resonant frequency, the nanoshell shows a softening type of nonlinear behavior, and the nanoshell bandwidth increases due to nonlinear factors. In this range, nanoshell has three different ranges of motion, of which two are stable and the other unstable, and so the jump phenomenon and saddle-node bifurcation are visible in the behavior of the system. Also piezoelectric voltage influences on static deformation and resonant frequency but has no significant effect on nonlinear behavior and bandwidth and also system very sensitive to the damping coefficient and due to decrease of nano shell stiffness, natural frequency decreases. And also, increasing or decreasing of some parameters lead to increasing or decreasing the resonance amplitude, resonant frequency, the system's instability, nonlinear behavior and bandwidth. (C) 2019 Elsevier Inc. All rights reserved.
机译:本文研究了基于功能梯度(FG)圆柱纳米壳并结合两个压电层的压电-粘性介质纳米壳谐振器(PVM-NSR)的非线性动力学,振动和稳定性分析。电弹性Gurtin-Murdoch表面/界面理论的非经典方法是基于von-Karman-Donnell壳模型和Hamilton原理的,并考虑了与Lagrange-Euler方法相结合的假设模式方法。复杂平均法与弧长连续法相结合,用于获得系统稳态振动的数值解。进行稳态响应的稳定性分析。研究了不同边界条件,不同几何比,结构参数,静电和谐波激励对非线性频率响应和稳定性分析等参数研究。结果表明,在纳米壳的固有频率附近,它将导致共振并具有大的运动幅度,并且在共振频率附近,纳米壳表现出一种软化的非线性行为,并且纳米壳的带宽由于非线性因素而增加。在此范围内,纳米壳具有三个不同的运动范围,其中两个是稳定的,另一个是不稳定的,因此在系统的行为中可以看到跳跃现象和鞍形节点分叉。压电电压也会影响静态变形和谐振频率,但对非线性行为和带宽没有明显影响,并且系统对阻尼系数非常敏感,并且由于纳米壳刚度的降低,固有频率也会降低。而且,增加或减少某些参数也会导致增加或减少共振幅度,共振频率,系统的不稳定性,非线性行为和带宽。 (C)2019 Elsevier Inc.保留所有权利。

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