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Nonlinear Dynamics Behaviors of a Composite Laminated Cantilevered Plate Under Transverse Excitation

机译:横向激发下复合层压悬臂板的非线性动力学行为

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The nonlinear dynamics analyses of a composite laminated cantilevered rectangular plate are studied, which is forced by the transverse excitation. We use the Hamilton's principle and establish the nonlinear partial differential governing equations of motion for the composite laminated cantilevered rectangular plate. Numerical simulations are presented to investigate the effects of the transverse excitation on the steady-state responses of the cantilevered plate. The bifurcation diagrams of the composite laminated cantilevered plate for w1 via the base excitation amplitude F is obtained. From the bifurcation diagram, it is found that the motions of the system are as follows: from periodic motion to multiple periodic motion, then to chaotic motion. Based on the above bifurcation diagrams and using the same parameters, the base excitation amplitude F are changed to obtain the waveforms, the two-dimensional phase portraits, the three-dimensional phase portraits and the Poincare maps of the system. The results of numerical simulation demonstrate that there exist the periodic and chaotic motions of the composite laminated cantilevered rectangular plate.
机译:研究了复合层叠悬臂式矩形板的非线性动力学分析,由横向激发强制。我们使用Hamilton的原理,并建立了复合层压悬臂式矩形板的非线性局部差分控制方程。提出了数值模拟,以研究横向激发对悬臂板稳态响应的影响。获得通过基础激发幅度F的复合层叠悬臂板的复合叠层悬臂板的分叉图。从分叉图中发现,系统的运动如下:从周期性运动到多个周期性运动,然后进行混沌运动。基于上述分岔图和使用相同的参数,改变基本激励幅度F以获得波形,二维相位肖像,三维相位肖像和系统的庞卡地图。数值模拟的结果表明,存在复合层压悬臂式矩形板的周期性和混沌运动。

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