Free Vibration Analysis of Multi-Layer Rectangular Plate with Two Magneto-Rheological Fluid Layers and a Flexible Core

M. Shekarzadeh, M. Najafizadeh, P. Yousefi, A. Nezamabadi, K. Khorshidi
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引用次数: 1

Abstract

In the present article, the free vibration analysis of a multi-layer rectangular plate with two magneto-rheological (MR) fluid layers and a flexible core is investigated based on exponential shear deformation theory for the first time. In exponential shear deformation theory, exponential functions are used in terms of thickness coordinate to include the effect of transverse shear deformation and rotary inertia. The displacement of the flexible core is modeled using Frostig’s second order model which contains a polynomial with unknown coefficients. MR fluids viscosity can be varied by changing the magnetic field intensity. Therefore, they have the capability to change the stiffness and damping of a structure. The governing equations of motion have been derived using Hamilton`s principle. The Navier technique is employed to solve derived equations.  To validate the accuracy of the derived equations, the results in a specific case are compared with available results in the literature, and a good agreement will be observed.  Then, the effect of variation of some parameters such as magnetic field intensity, core thickness to panel thickness ratio and MR layer thickness to panel thickness ratio  on natural frequency of the sandwich panel is investigated.
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具有两磁流变流体层和柔性磁芯的多层矩形板的自由振动分析
本文首次基于指数剪切变形理论,研究了具有两磁流变流体层和柔性芯的多层矩形板的自由振动问题。在指数剪切变形理论中,用厚度坐标表示的指数函数来考虑横向剪切变形和转动惯量的影响。采用含未知系数多项式的Frostig二阶模型对柔性铁芯的位移进行建模。磁流变液的粘度可以通过改变磁场强度来改变。因此,它们有能力改变结构的刚度和阻尼。利用哈密顿原理推导出了运动的控制方程。采用纳维耶技术求解导出的方程。为了验证导出方程的准确性,将具体情况下的结果与文献中已有的结果进行了比较,并将观察到良好的一致性。然后研究了磁场强度、芯厚与板厚比、磁流变层厚与板厚比等参数的变化对夹层板固有频率的影响。
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