首页> 外文会议>International Congress on Sound and Vibration >FORCED VIBRATION RESPONSE CHARACTERISTICS OF PERIODIC RECTANGULAR PLATE STRUCTURES BASED ON THE DYNAMIC STIFFNESS METHOD
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FORCED VIBRATION RESPONSE CHARACTERISTICS OF PERIODIC RECTANGULAR PLATE STRUCTURES BASED ON THE DYNAMIC STIFFNESS METHOD

机译:基于动态刚度法的周期性矩形板结构强制振动响应特性

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Forced vibration response characteristics of periodic rectangular plate structures with general boundary conditions are studied by using the dynamic stiffness method. Geometrical property is assumed to vary periodically in the whole plate structure. Both of the dynamic stiffness matrices of in-plane and out-of-plane vibration of the unit plate are derived. Once the dynamic stiffness matrix of the unit plate is obtained, the dynamic stiffness matrix of the whole periodic structure will be assembled in a similar manner with the finite element method. Harmonic responses are calculated to investigate the band gap behaviours of the periodic plate structures. Parametric studies are implemented to investigate the effects of the geometrical parameters on the vibration band gap characteristics.
机译:采用动态刚度法研究了一般边界条件的周期性矩形板结构的强制振动响应特性。假设几何特性在整个板结构中定期变化。衍生平面内平面内和平面外振动的动态刚度矩阵。一旦获得了单位板的动态刚度矩阵,就通过有限元方法以类似的方式组装整个周期性结构的动态刚度矩阵。计算谐波响应以研究周期板结构的带隙行为。实施参数研究以研究几何参数对振动带隙特性的影响。

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