首页> 外文期刊>Journal of Sandwich Structures and Materials >Nonlocal strain gradient theory for the magneto-electro-elastic vibration response of a porous FG-core sandwich nanoplate with piezomagnetic face sheets resting on an elastic foundation
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Nonlocal strain gradient theory for the magneto-electro-elastic vibration response of a porous FG-core sandwich nanoplate with piezomagnetic face sheets resting on an elastic foundation

机译:多孔FG芯夹层纳米液相色谱围绕弹性基础储存的多孔FG芯夹层纳米板磁力弹性振动响应的非局部应变梯度理论

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摘要

The free vibration analysis of a nonlocal strain gradient elastic sandwich nanoplate with porous graded core and piezomagnetic face sheets is presented in this paper. The rectangular elastic sandwich nanoplate is resting on Pasternak's foundation. Porosities are distributed evenly and unevenly through the thickness of the core. The gradation of material properties having porosities is described using a modified power-law function. A nonlocal parameter and a strain gradient parameter are employed to describe both stiffness reduction and stiffness enhancement of nanoplates. The governing equations of the motion are derived from Hamilton's principle based on the first order shear deformation theory. In addition, Eringen's nonlocal strain gradient piezo-magneto-elasticity theory is used to consider nanoscale effects. The analytical solution is presented to solve seven governing equations of motion using Navier's solution. Eventually, the natural frequency is surveyed for different side length ratios, nonlocal coefficient, porosity volume fraction, and parameters of foundation numerically with even and uneven porosity distributions.
机译:本文介绍了具有多孔分级芯和压电面片材的非局部应变梯度弹性夹层纳米板的自由振动分析。矩形弹性夹心纳米液体纳入Pasternak的基础。孔隙率均匀地分布,通过芯的厚度均匀分布。使用改进的电力法函数描述具有孔隙率的材料性质的灰度。使用非局部参数和应变梯度参数来描述纳米间板的刚度降低和刚度增强。行动的控制方程是根据第一阶剪切变形理论的汉密尔顿原则。此外,eringen的非本体应变梯度压电 - 弹性理论用于考虑纳米级效应。提出了使用Navier的解决方案解决了七个管理运动方程的分析解决方案。最终,用偶数和不均匀的孔隙分布,对不同侧长度比率,非局部系数,孔隙率体积分数和基础参数进行调查的自然频率。

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