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Theory and experiment of nonlinear vibrations and dynamic snap-through phenomena for bi-stable asymmetric laminated composite square panels under foundation excitation

机译:地基激励下双稳态非对称层合板的非线性振动与动态捕捉现象的理论与实验

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This paper theoretically and experimentally investigates the dynamic snap-through phenomena and the nonlinear vibrations of the bi-stable asymmetric laminated composite square panel under the foundation excitation. We propose a new method to describe the dynamic snap-through phenomena of the bi-stable asymmetric laminated composite square panel by using the time-varying principle curvatures. The boundary conditions of the bi-stable asymmetric laminated composite square panel are clamped at the center of the panel and free at four edges. The mode shapes are obtained by employing Rayleigh-Ritz method and Lagrangian multipliers method. According to the double curvature type of von-Karman nonlinear strain-displacement relations, the third-order shear deformation theory and Hamilton principle, the nonlinear partial differential governing equations of motion are derived for the bi-stable asymmetric laminated composite square panel. The nonlinear ordinary differential governing equation of motion is obtained by using Galerkin method. Numerical simulations are used to study the nonlinear vibrations and the dynamic snap-through phenomena of the bi-stable asymmetric laminated composite square panel including the effect of the structural damping by using the 4-order Runge-Kutta method. Analyzing the phase portrait and time history of the principle curvature, the dynamic snap-through phenomena of the bi-stable asymmetric laminated composite square panel are observed through changing the amplitude of the foundation excitation. The vibration experiments are also finished to find the dynamic snap-through phenomena and the nonlinear vibrations of the bi-stable asymmetric laminated composite square panel. It is known that the theoretical and the experimental results are the qualitative agreement and the experimental results provide a reference for the application of the bi-stable asymmetric laminated composite square panel in the aeronautic and mechanical engineering fields.
机译:本文在理论和实验上研究了在基础激励下双稳态非对称层压复合方形板的动态捕捉现象和非线性振动。我们提出了一种利用时变主曲率来描述双稳态非对称层状复合方形面板的动态捕捉特性的新方法。双稳态不对称层压复合方形面板的边界条件固定在面板的中心,四个边缘自由。通过使用瑞利-里兹方法和拉格朗日乘子方法获得模态形状。根据冯-卡尔曼非线性应变-位移关系的双曲率类型,三阶剪切变形理论和汉密尔顿原理,推导了双稳态非对称层合复合方形板的非线性偏微分运动控制方程。利用Galerkin方法获得了非线性常微分运动控制方程。数值模拟被用来研究双稳态不对称层压复合方形板的非线性振动和动态捕捉现象,包括使用四阶Runge-Kutta方法的结构阻尼效应。通过分析主曲率的相图和时程,通过改变基础激励的振幅,观察了双稳态非对称叠层复合方形板的动态捕捉现象。还完成了振动实验,以发现双稳态非对称层压复合方形板的动态捕捉现象和非线性振动。众所周知,理论和实验结果在质量上是一致的,实验结果为双稳态不对称叠层复合方形板在航空机械领域的应用提供了参考。

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