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Size-dependent magneto-electro-elastic vibration analysis of FG saturated porous annular/ circular micro sandwich plates embedded with nano-composite face sheets subjected to multi-physical pre loads

机译:嵌入多物理预载荷的纳米复合面板的FG饱和多孔环形/圆形微夹芯板的尺寸依赖性磁电弹性振动分析

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摘要

The present study analyzed free vibration of the three-layered micro annular/circular plate which its core and face sheets are made of saturated porous materials and FG-CNTRCs, respectively. The structure is subjected to magneto-electric fields and magneto-electro-mechanical pre loads. Mechanical properties of the porous core and also FG-CNTRC face sheets are varied through the thickness direction. Using dynamic Hamilton's principle, the motion equations based on MCS and FSD theories are derived and solved via GDQ as an efficient numerical method. Effect of different parameters such as pores distributions, porosity coefficient, pores compressibility, CNTs distribution, elastic foundation, multi-physical pre loads, small scale parameter and aspect ratio of the plate are investigated. The findings of this study can be useful for designing smart structures such as sensor and actuator.
机译:本研究分析了三层微环形/圆形板的自由振动,其芯和面板分别由饱和多孔材料和FG-CNTRC制成。该结构经受磁场和磁机电预载荷。多孔芯和FG-CNTRC面板的机械性能通过厚度方向而变化。使用动态汉密尔顿原理,通过GDQ作为一种有效的数值方法导出和解决基于MCS和FSD理论的运动方程。研究了不同参数,如孔分布,孔隙率系数,孔压缩性,CNT分布,弹性基础,多物理预载,小尺度参数和宽高比的效果。该研究的发现对于设计诸如传感器和执行器的智能结构非常有用。

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