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Modeling and analysis of spiral actuators by exact geometry piezoelectric solid-shell elements

机译:螺旋致动器的精确几何建模和固体压电元件建模与分析

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摘要

An exact geometry four-node piezoelectric solid-shell element through the sampling surfaces formulation is proposed. The sampling surfaces formulation is based on choosing inside the shell N - 2 sampling surfaces parallel to the middle surface and located at Chebyshev polynomial nodes to introduce the displacements and electric potentials of these surfaces as fundamental shell unknowns. The bottom and top surfaces are also included into a set of sampling surfaces. Such choice of unknowns with the use of Lagrange polynomials of degree N - 1 in the through-the-thickness interpolations of displacements, strains, electric potential, and electric field yields a robust piezoelectric shell formulation. To implement efficient analytical integration throughout the solid-shell element, the extended assumed natural strain method is employed. The developed hybrid-mixed four-node piezoelectric solid-shell element is based on the Hu-Washizu variational principle and shows the excellent performance for coarse mesh configurations. It can be useful for the 3D stress analysis of piezoelectric shells with variable curvatures, in particular for the modeling and analysis of spiral actuators.
机译:提出了一种精确的几何结构的四节点压电固体壳体元件,通过采样表面公式。采样表面公式是基于在壳体内部选择与中间表面平行且位于Chebyshev多项式节点处的N-2个采样表面,以引入这些表面的位移和电势作为基本壳体未知数。底面和顶面也包含在一组采样面中。在位移,应变,电势和电场的整个厚度插值中使用度数为N-1的拉格朗日多项式对未知数进行的这种选择产生了可靠的压电壳公式。为了对整个固体单元进行有效的分析积分,采用了扩展的假定自然应变方法。基于Hu-Washizu变分原理开发的混合混合四节点压电固体元件,在粗网孔结构中显示出优异的性能。对于曲率可变的压电壳体的3D应力分析,尤其是螺旋执行器的建模和分析,它可能是有用的。

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