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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >An efficient finite element with layerwise mechanics for smart piezoelectric composite and sandwich shallow shells
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An efficient finite element with layerwise mechanics for smart piezoelectric composite and sandwich shallow shells

机译:一种有效的分层智能有限元,用于智能压电复合材料和夹层浅壳

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摘要

In this work, we present a new efficient fournode finite element for shallow multilayered piezoelectric shells, considering layerwise mechanics and electromechanical coupling. The laminatemechanics is based on the zigzag theory that has only seven kinematic degrees of freedom per node. The normal deformation of the piezoelectric layers under the electric field is accounted for without introducing any additional deflection variables. A consistent quadratic variation of the electric potential across the piezoelectric layers with the provision of satisfying the equipotential condition of electroded surfaces is adopted. The performance of the newelement is demonstrated for the static response under mechanical and electric potential loads, and for free vibration response of smart shells under different boundary conditions. The predictions are found to be very close to the three dimensional piezoelasticity solutions for hybrid shells made of not only single-material composite substrates, but also sandwich substrates with a soft core for which the equivalent single layer (ESL) theories perform very badly.
机译:在这项工作中,我们考虑了分层力学和机电耦合,提出了一种用于浅层多层压电壳的新型高效四节点有限元。叠层力学基于曲折理论,每个节点只有七个运动学自由度。压电层在电场作用下的法向变形无需引入任何其他偏转变量即可解决。采用满足电极表面等电位条件的压电层上电位的二次方变化。该新元件的性能在机械和电势载荷下的静态响应以及在不同边界条件下智能壳体的自由振动响应方面都得到了证明。发现该预测非常接近于混合壳的三维压电弹性解,该混合壳不仅由单材料复合衬底制成,而且还包括具有软芯的夹心衬底,而等效单层(ESL)理论在其中表现非常差。

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