Analysis and active control of nonlinear vibration of composite lattice sandwich plates

被引:1
|
作者
Yuyang Chai
Fengming Li
Zhiguang Song
Chuanzeng Zhang
机构
[1] Harbin Engineering University,College of Aerospace and Civil Engineering
[2] University of Siegen,Department of Civil Engineering
来源
Nonlinear Dynamics | 2020年 / 102卷
关键词
Composite lattice sandwich plates; Nonlinear vibration properties; Active vibration control; Piezoelectric material; Velocity feedback control (VFC) and ; control;
D O I
暂无
中图分类号
学科分类号
摘要
This paper is devoted to investigate the nonlinear vibration characteristics and active control of composite lattice sandwich plates using piezoelectric actuator and sensor. Three types of the sandwich plates with pyramidal, tetrahedral and Kagome cores are considered. In the structural modeling, the von Kármán large deflection theory is applied to establish the strain–displacement relations. The nonlinear equations of motion of the structures are derived by Hamilton’s principle with the assumed mode method. The nonlinear free and forced vibration responses of the lattice sandwich plates are calculated. The velocity feedback control (VFC) and H∞ control methods are applied to design the controller. The nonlinear vibration responses of the sandwich plates with pyramidal, tetrahedral and Kagome cores are compared. The influences of the ply angle of the laminated face sheets, the thicknesses of the lattice core and face sheets and the excitation amplitude on the nonlinear vibration behaviors of the sandwich plates are investigated. The correctness of the H∞ control algorithm is verified by comparing with the experiment results reported in the literature. The controlled nonlinear vibration response of the sandwich plate is computed and compared with that of the uncontrolled structural system. Numerical results indicate that the VFC and H∞ control methods can effectively suppress the large amplitude vibration of the composite lattice sandwich plates.
引用
收藏
页码:2179 / 2203
页数:24
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