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Free vibration analysis of five-layered composite sandwich plates with two-layered viscoelastic cores

机译:具有两层粘弹性芯的五层复合夹芯板的自由振动分析

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This paper deals with the free vibration analysis of two kinds of five-layered composite sandwich plates with two-layered viscoelastic cores based on the first-order shear deformation theory for the first time. To fulfill this purposes, first, the Hamilton's principle is employed to derive the equations of motion that govern the free vibrations of the sandwich plates, and solved by employing the method of the closed-form Navier method. Then, the present solutions are compared with those available in the previous literature to confirm their validity. Next, the variations of frequency and loss factor with system parameters are evaluated and presented graphically. Owing to considering the effect of rotary inertias and shear deformation, thin-to-moderately thick shells can be analyzed. New results for free vibration analysis of five-layered composite sandwich plates with two-layered viscoelastic cores are also presented for the first time and they may be served as benchmark for researchers in this field.
机译:本文首次基于一阶剪切变形理论,对两种具有两层粘弹性芯的五层复合夹芯板的自由振动进行了分析。为了实现这一目的,首先,采用汉密尔顿原理来导出控制夹心板自由振动的运动方程,并通过采用封闭形式的Navier方法来求解。然后,将本解决方案与先前文献中提供的解决方案进行比较,以确认其有效性。接下来,评估频率和损耗因数随系统参数的变化,并以图形方式显示。考虑到旋转惯性和剪切变形的影响,可以分析薄至中厚的壳。还首次提出了具有两层粘弹性芯的五层复合夹芯板自由振动分析的新结果,它们可作为该领域研究人员的基准。

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