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An efficient facet shell element with layerwise mechanics for coupled electromechanical response of piezolaminated smart shells

机译:一种有效的面壳元件,具有层状机械,用于耦合压电型智能壳的机电响应

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In this work, an efficient four-node facet shell element is presented for analysis of doubly curved multilayered piezoelectric shells, based on an electromechanically coupled third order zigzag theory. It is motivated by the excellent performance of the shell element developed earlier by the authors for elastic laminated shells. The laminate theory not only incorporates a layerwise description of the inplane displacements but also accounts for the layerwise normal deformation due to the d(33)-effect of the piezoelectric layers. The number of primary displacement variables is, however, the same as for the smeared third order theory (TOT). A quadratic variation of the electric potential across the piezoelectric layers is assumed, while satisfying the equipotential condition of electroded piezoelectric surfaces using the concept of electric nodes. The performance of the element is assessed for the stress analysis under mechanical and electric potential loads, and for the free vibration response of hybrid piezolaminated deep shells in comparison with the three dimensional piezoelasticity based analytical and finite element solutions. The comparison shows excellent accuracy of the present element for the deflection, stresses, sensory potential, electric displacement and natural frequencies of hybrid shells made of composite as well as the highly inhomogenous soft-core sandwich laminates, for which the smeared TOT is shown to produce highly erroneous results. It is also shown to yield better accuracy than the other available elements of similar computational efficiency for hybrid composite shells.
机译:在这项工作中,提出了一种有效的四节点面壳元件,用于基于机电耦合的第三阶Zigzag理论分析双弯曲多层压电壳。它是由提前开发的壳元素的优异性能,用于弹性层压壳。层压材料理论不仅包括平板位移的层状描述,而且还考虑了由于压电层的D(33)的D(33) - 效率而定的层状正常变形。然而,主要位移变量的数量与涂抹的第三订单理论(TOT)相同。假设压电层穿过电势的二次变化,同时满足使用电节点概念的电极压电表面的等电位状态。与机电势负荷下的应力分析评估元素的性能,以及与三维压电弹性的分析和有限元溶液相比,杂化压电的深壳的自由振动响应。该比较显示了由复合材料制成的偏转,应力,感觉电位,电置换和杂种壳的偏转壳的偏转,应力,感觉电位,电置换和自然频率的优异精度以及高度不源于高源核夹层层压板,涂抹的Tot显示出来高度错误的结果。还显示出比混合复合壳的类似计算效率的其他可用元件产生更好的精度。

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