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首页> 外文期刊>Journal of intelligent material systems and structures >A Refined Sinus Finite Element Model for the Analysis of Piezoelectric-Laminated Beams
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A Refined Sinus Finite Element Model for the Analysis of Piezoelectric-Laminated Beams

机译:压电叠合梁分析的精细窦性有​​限元模型

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摘要

A three-nodded beam finite element is developed for the analysis of composite-laminated beams with distributed piezoelectric sensor/actuator layers. The mechanical part of the proposed element is based on the refined sinus model. This element does not require shear correction factor and ensures continuity conditions for displacements, transverse shear stresses as well as boundary conditions on the upper and lower surfaces of the beam. This conforming finite element is totally free of shear locking, and the number of mechanical unknowns is independent of the number of layers. For each piezoelectric layer, a high-order electrical potential field is considered. The virtual work principle leads to a derivation that could include dynamic analysis. However, in this study, only static problems have been considered. Comparison of numerical results obtained from this formulation with previous works shows that the present finite element is suitable for predicting fully coupled behaviors of both thick and thin smart-laminated beams under mechanical and electrical loadings.
机译:开发了三点梁有限元,用于分析具有分布压电传感器/执行器层的复合层合梁。拟议元素的机械部分基于精制窦道模型。该单元不需要剪切校正因子,并确保位移的连续性条件,横向剪应力以及梁上下表面的边界条件。这种一致的有限元完全没有剪切锁定,并且机械未知数的数量与层数无关。对于每个压电层,考虑高阶电位场。虚拟工作原理导致派生可能包括动态分析。但是,在这项研究中,只考虑了静态问题。从该公式获得的数值结果与以前的工作进行比较,结果表明,本有限元适用于预测在机械和电负载下厚薄智能薄层梁的完全耦合行为。

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