首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Magneto-electro-mechanical vibration of porous functionally graded smart sandwich plates with viscoelastic core
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Magneto-electro-mechanical vibration of porous functionally graded smart sandwich plates with viscoelastic core

机译:具有粘弹性芯的多孔功能分级智能夹层板的磁力机电振动

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摘要

In this paper, the vibrations of a sandwich plate with functionally graded magneto-electro-elastic (FG-MEE) face sheets and porous and viscoelastic core were investigated. Power-law rule modified by two types of porosity distributions was used to model the FG-MEE plates. The plate with even porosity distribution was considered as the FG-MEE-I model, while the one with uneven porosity distribution was labeled as the FG-MEE-II model. The normal and shear stresses were considered in the core layer, and the interlayer was modeled by the standard linear solid scheme. First-order shear deformation plate theory was used to derive the governing equation of the sandwich panel including the FG-MEE plate and viscoelastic core interaction. The governing equations were solved by the Navier method. A detailed parametric analysis was conducted to assess the effects of electric and magnetic fields, core-to-face sheet thickness ratio, and power-law index on the linear vibration characteristics of sandwich plates with functionally graded MEE face sheets. It is observed that for the FG-MEE-I model, an increase in the porosity coefficient led to a reduction in the frequency of the FG-MEE sandwich plate. On the contrary, for the FG-MEE-II model, an increment in the porosity coefficient enhanced the natural frequency.
机译:本文研究了用功能梯度磁电 - 弹性(FG-MEE)面板和多孔粘弹性芯的夹层板的振动。通过两种类型的孔隙度分布修改的幂律规则用于模拟FG-MEE板。具有甚至孔隙度分布的板被认为是FG-MEE-I模型,而具有不均匀孔隙分布的孔隙分布的板被标记为FG-MEE-II模型。在核心层中考虑正常和剪切应力,并且间层间由标准的线性固体方案进行建模。一阶剪切变形板理论用于导出夹层面板的控制方程,包括FG-MEE板和粘弹性芯相互作用。通过Navier方法解决了管理方程。进行了详细的参数分析,以评估电场和磁芯对板厚比和动力法指数对具有功能分级MEE面板的夹层板的线性振动特性的影响。观察到,对于FG-MEE-I模型,孔隙率系数的增加导致FG-MEE三明治板的频率降低。相反,对于FG-MEE-II模型,孔隙度系数的增量增强了自然频率。

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