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Active vibration control of truncated conical shell under harmonic excitation using piezoelectric actuator

机译:压电致动器谐波激发下截断锥形壳体的主动振动控制

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In this study, active vibration control of an FGM truncated conical shell, subjected to the harmonic excitation, is investigated via a semi-analytical method. The governing equations of truncated conical shells in conjunction with piezoelectric layers are derived using Donnell shell theory and von Karman's non-linearity. Then, the dynamic equation of the system is discretized using Galerkin method to obtain the ordinary differential equation of system. Using the semi-analytical method by means of perturbation theory, the frequency response of superharmonic and sub-harmonic analysis of the system is performed. Then, using the piezoelectric smart materials, the active vibration control for the truncated conical shell is investigated and frequency-amplitude functions are analyzed for the superharmonic and subharmonic resonances. The results presents the influence of excitation amplitude and cone vertex angle on the frequency-amplitude response and in specific the effect of different control gain coefficients on the system's vibration behavior. Finally, the performance of active control strategy is investigated by means of the time response of system equipped with piezoelectric layers for different types of the FG distribution in thickness direction.
机译:在该研究中,通过半分析方法研究了对谐波激发进行谐波激发的FGM截短的锥形壳的主动振动控制。使用Donnell Shell理论和Von Karman的非线性来源于截短的锥形壳体的控制方程与压电层一起导出。然后,使用Galerkin方法离散化系统的动态方程,以获得系统的常微分方程。通过扰动理论使用半分析方法,执行系统的超声和子谐波分析的频率响应。然后,使用压电纤维材料,研究了截短的圆锥形壳体的有源振动控制,分析了超声和次谐振共振的频率幅度函数。结果介绍了激发幅度和锥形角对频率幅度响应的影响,以及不同控制增益系数对系统振动行为的影响。最后,通过配备有压电层的时间响应来研究主动控制策略的性能,用于厚度方向的不同类型的FG分布。

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