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首页> 外文期刊>Journal of intelligent material systems and structures >Size-dependent free vibration analysis of three-layered exponentially graded nanoplate with piezomagnetic face-sheets resting on Pasternak's foundation
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Size-dependent free vibration analysis of three-layered exponentially graded nanoplate with piezomagnetic face-sheets resting on Pasternak's foundation

机译:基于Pasternak基础的三层指数梯度纳米板的压磁面板尺寸依赖的自由振动分析

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摘要

This work is devoted to the free vibration nonlocal analysis of an elastic three-layered nanoplate with exponentially graded graphene sheet core and piezomagnetic face-sheets. The rectangular elastic three-layered nanoplate is resting on Pasternak's foundation. Material properties of the core are supposed to vary along the thickness direction based on the exponential function. The governing equations of motion are derived from Hamilton's principle based on first-order shear deformation theory. In addition, Eringen's nonlocal piezo-magneto-elasticity theory is used to consider size effects. The analytical solution is presented to solve seven governing equations of motion using Navier's solution. Eventually, the natural frequency is scrutinized for different side length ratio, nonlocal parameter, inhomogeneity parameter, and parameters of foundation numerically. The comparison with various references is performed for validation of our analytical results.
机译:这项工作致力于弹性三层纳米板的自由振动非局部分析,该纳米板具有指数级的石墨烯片芯和压电面板。矩形弹性三层纳米板位于Pasternak的基础上。假定芯的材料特性基于指数函数沿厚度方向变化。运动的控制方程是基于一阶剪切变形理论从汉密尔顿原理导出的。另外,使用艾林根的非局部压电-磁弹性理论来考虑尺寸效应。提出了解析解决方案,以使用Navier解决方案求解七个运动控制方程。最终,对不同边长比,非局部参数,非均匀性参数和地基参数的固有频率进行了仔细检查。与各种参考文献进行比较以验证我们的分析结果。

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