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An equivalent single-layer model for magnetoelectroelastic multilayered plate dynamics

机译:磁电弹性多层板动力学的等效单层模型

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摘要

An equivalent single-layer model for the dynamic analysis of magnetoelectroelastic laminated plates is presented. The electric and magnetic fields are assumed to be quasi-static and the first-order shear deformation theory is used. The formulation of the model provides for a preliminary fulfillment of the electro-magnetic governing equations, which allows to determine the electric and magnetic potential as functions of the mechanical variables. Then, by using this result, the equations of motion are written leading to the problem governing equations. They involve the same terms of the elastic dynamic problem weighted by effective stiffness coefficients, which take the magneto-electro-mechanical couplings into account. Additional terms, exclusively arising in force of the piezoelectric and piezomagnetic behavior, appear. The electromagnetic inputs are treated as equivalent external distributed axial forces and bending moments. Free and forced vibrations solutions for simply-supported plates are presented to validate the model by comparing the present results with benchmark solutions found in the literature.
机译:提出了等效的单层模型,用于磁电弹性层压板的动力学分析。假定电场和磁场为准静态,并使用一阶剪切变形理论。该模型的公式提供了电磁控制方程式的初步实现,从而可以确定作为机械变量函数的电势和磁势。然后,通过使用该结果,编写运动方程,从而得出控制问题的方程。它们涉及由有效刚度系数加权的弹性动力学问题的相同项,其中考虑了磁-电-机械耦合。出现仅在压电和压电行为中产生的附加术语。电磁输入被视为等效的外部分布轴向力和弯矩。通过将当前结果与文献中的基准解决方案进行比较,提出了简单支撑板的自由振动和强迫振动解决方案以验证模型。

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