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A finite element model for the analysis of 3D axisymmetric laminated shells with piezoelectric sensors and actuators

机译:带有压电传感器和执行器的3D轴对称叠层壳分析的有限元模型

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This paper presents the development of a semi-analytical axisymmetric shell finite element model with piezoelectric layers using the 3D linear elasticity theory. The piezoelectric effect of the material could be used as sensors and/or actuators in way to control shell deformation. In the present 3D axisymmetric model, the equations of motion are expressed by expanding the displacement field using Fourier series in the circumferential direction. Thus, the 3D elasticity equations of motion are reduced to 2D equations involving circumferential harmonics. In the finite element formulation the dependent variables, electric potential and loading are expanded in truncated Fourier series. Special emphasis is given to the coupling between symmetric and anti-symmetric terms for laminated materials with piezoelectric rings. Numerical results obtained with the present model are found to be in good agreement with other finite element solutions.
机译:本文利用3D线性弹性理论提出了带有压电层的半解析轴对称壳有限元模型的开发。材料的压电效应可以用作传感器和/或致动器,以控制壳体变形。在本发明的3D轴对称模型中,通过在周向上使用傅立叶级数展开位移场来表示运动方程。因此,运动的3D弹性方程式简化为涉及圆周谐波的2D方程式。在有限元公式中,因变量,电势和负载以截短的傅立叶级数展开。对于带有压电环的层压材料,要特别强调对称项和反对称项之间的耦合。发现通过本模型获得的数值结果与其他有限元解决方案非常吻合。

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