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Dynamic modeling and characteristic analysis of the periodically coupled plate structure based on the dynamic stiffness method

机译:基于动力刚度法的周期性耦合板结构动力学建模与特征分析

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In this paper, the dynamic model of periodically coupled plate structure is formulated by the dynamic stiffness method (DSM). Geometrical construction is assumed to vary periodically in the whole plate structure. According to the coupling condition, the whole periodic plate structure is divided into appropriate individual rectangular plates firstly. To the individual plate, the displacement fields both of in-plane and out-of-plane are derived from the governing equation with a strong-form methodology. The dynamic stiffness matrix is developed by the Projection method. Once the dynamic stiffness matrixes of the individual plates are obtained, the global dynamic stiffness matrix of the whole periodic structure can be assembled in the similar manner with the finite element method (FEM). Several examples are presented to validate the convergence and accuracy of the present formulation. From the harmonic responses, the band gap behaviors can be observed obviously. Furthermore, a parametric analysis is implemented to study the effects of geometrical distributions and plate dimensions on the vibration characteristics.
机译:本文采用动态刚度法(DSM)建立了周期耦合板结构的动力学模型。假定几何结构在整个板结构中周期性变化。根据耦合条件,首先将整个周期板结构分为适当的单个矩形板。对于单个板,采用强形式方法从控制方程中得出平面内和平面外的位移场。动态刚度矩阵通过投影方法开发。一旦获得了各个板的动态刚度矩阵,就可以使用有限元方法(FEM)以类似的方式组装整个周期结构的整体动态刚度矩阵。提出了几个例子来验证本配方的收敛性和准确性。从谐波响应可以明显观察到带隙行为。此外,还进行了参数分析,以研究几何分布和板尺寸对振动特性的影响。

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