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An efficient coupled layerwise theory for dynamic analysis of piezoelectric composite beams

机译:用于压电复合材料梁动力分析的高效分层耦合理论

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An efficient new coupled one-dimensional model is developed for the dynamics of piezoelectric composite beams. The model combines third order zigzag approximation for the displacement with layerwise approximation of the electric field as piecewise linear for sublayers. By enforcing the conditions of zero transverse shear stress at the top and bottom and its continuity at layer interfaces, the displacement field is expressed in terms of three primary displacement variables and potentials. The governing coupled equations of stress and charge equilibrium and boundary conditions are derived from Hamilton's principle. Analytical solutions are obtained, for free vibrations and forced response under harmonic load, for simply supported hybrid beams and the results are compared with the exact three-dimensional solution and uncoupled first order shear deformation theory solution. The present results show significant improvement over the first order solution and agree very well with the exact solution for both thin and thick hybrid beams. The results demonstrate the capability of the developed theory to adequately model open and closed circuit electric boundary conditions to accurately predict their influence on the response. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 29]
机译:开发了一种有效的新型耦合一维模型,用于压电复合梁的动力学。该模型将位移的三阶之字形逼近与电场的逐层近似(对于子层而言为分段线性)相结合。通过在顶部和底部施加零横向剪应力及其在层界面处的连续性的条件,以三个主要位移变量和电势表示位移场。应力和电荷平衡以及边界条件的控制耦合方程是根据汉密尔顿原理得出的。对于简支混合梁,获得了谐波载荷下的自由振动和强迫响应的解析解,并将结果与​​精确的三维解和解耦的一阶剪切变形理论解进行了比较。目前的结果表明,与一阶解相比,已有显着改进,并且与薄和厚混合梁的精确解都非常吻合。结果表明,开发的理论能够对开路和闭路电边界条件进行充分建模,以准确预测其对响应的影响。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:29]

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