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Vibration band gap properties of periodic Mindlin plate structure using the spectral element method

机译:谱元素法分析周期性Mindlin板结构的振动带隙特性

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In this paper, vibration band gap properties of periodic Mindlin plate structure with two simply supported opposite edges are studied using the spectral element method (SEM). Based on the Mindlin plate theory (MPT), the spectral Mindlin plate stiffness matrix is deduced. The spectral equation of the whole periodic structure is further established. Frequency responses are calculated by the spectral equations to illustrate band gap properties. Compared with the results based on the classic plate theory (CPT), the effects of the shear and rotary inertia on the band gap properties are analyzed. The results are also compared with those calculated by the finite element method (FEM). It can be observed that the SEM is more accurate in high frequency ranges. Furthermore, the influences of the material properties and structure dimension on the band gap behaviors are investigated.
机译:本文利用谱元法研究了具有两个简单支撑的相对边的周期性Mindlin板结构的振动带隙特性。基于Mindlin板理论(MPT),推导了谱Mindlin板刚度矩阵。进一步建立了整个周期结构的光谱方程。频率响应由频谱方程式计算,以说明带隙特性。与基于经典板理论(CPT)的结果相比较,分析了剪切和旋转惯性对带隙性能的影响。还将结果与通过有限元方法(FEM)计算的结果进行比较。可以观察到,SEM在高频范围内更为精确。此外,研究了材料性能和结构尺寸对带隙行为的影响。

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