首页> 外文期刊>International Journal for Numerical Methods in Engineering >A C-1 finite element for flexural and torsional analysis of rectangular piezoelectric laminated/sandwich composite beams
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A C-1 finite element for flexural and torsional analysis of rectangular piezoelectric laminated/sandwich composite beams

机译:C-1有限元,用于矩形压电叠层/夹心组合梁的弯曲和扭转分析

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摘要

This work deals with the development of a new C-1 finite element for analysing the bending and torsional behaviour of rectangular piezoelectric laminated/sandwich composite beams. The formulation includes transverse shear, warping due to torsion, and elastic-electric coupling effects. It also accounts for the inter-layer continuity condition at the interfaces between layers, and the boundary conditions at the upper and lower surfaces of the beam. The shear strain is represented by a cosine function of a higher order in nature and thus avoiding shear correction factors. The warping function obtained from a three-dimensional elasticity solution is incorporated in the present model. An exact integration is employed in evaluating various energy terms due to the application of field consistency approach while interpolating the transverse shear and torsional strains. The variation of the electric potential through the thickness is taken care of in the formulation based on the observation of three-dimensional solution. The performance of the laminated piezoelectric element is tested comparing with analytical results as well as with the reference solutions evaluated using three-dimensional finite element procedure. A detailed study is conducted to highlight the influence of length-to-thickness ratio on the displacements, stresses and electric potential field of piezoelectric laminated beam structures subjected to flexural and torsional loadings. Copyright (C) 2004 John Wiley Sons, Ltd.
机译:这项工作涉及一种新的C-1有限元的开发,该有限元用于分析矩形压电叠层/夹心复合梁的弯曲和扭转行为。该配方包括横向剪切,由于扭曲引起的翘曲和弹性电耦合效应。它还考虑了层之间界面处的层间连续性条件,以及梁的上下表面的边界条件。剪切应变本质上由较高阶的余弦函数表示,因此避免了剪切校正因子。从三维弹性解获得的翘曲函数被并入本模型。由于在插入横向剪切和扭转应变时应用了场一致性方法,因此在评估各种能量项时采用了精确积分。根据对三维溶液的观察,应注意配方中电位随厚度的变化。测试叠层压电元件的性能,并与分析结果以及使用三维有限元程序评估的参考溶液进行比较。进行了详细的研究,以突出长度与厚度之比对承受弯曲和扭转载荷的压电叠层梁结构的位移,应力和电势场的影响。版权所有(C)2004 John Wiley Sons,Ltd.

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