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Analysis of finite deformation of curved beams bonded with piezoelectric actuating layers

机译:压电激励层粘结的弯曲梁的有限变形分析

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摘要

Piezoelectric laminated curved beams or laminated curved smart beams, one of the most popular elements, are widely used in nano- or micro-electromechanical systems due to their excellent properties such as small volume, lightweight, and quick response. In this article, the finite deformation of piezoelectric laminated curved beams is analyzed based on Lagrangian and Eulerian description. The piezoelectric actuating character for the deflection in the curved beams bonded with piezoelectric film (polyvinylidene fluoride) driving layers is investigated. Choosing the deformed radius of curvature and tangent slope angle as fundamental parameters, the governing equations of laminated curved smart beams under static mechanical and electrical loadings are derived. First, the equilibrium equations are deduced and decoupled using the deformed angle of tangent slope as the only variant. And then the analytical solutions of laminated curved smart beams are presented using harmonic functions. Finally, the static deformations of the laminated curved smart beams are calculated by this method and the finite element method. The results exhibit good consistency and show the validation of the present method. Circular and spiral beams covered with piezoelectric layers are researched further. Effects of radius, thickness ratios, and stacking sequence on deflections of the piezoelectric laminated beams are explored as well.
机译:压电叠层弯曲梁或叠层弯曲智能梁是最受欢迎的元件之一,由于其优异的性能(例如体积小,重量轻和响应速度快)而广泛用于纳米或微机电系统。本文基于拉格朗日和欧拉描述,分析了压电叠层弯曲梁的有限变形。研究了与压电薄膜(聚偏二氟乙烯)驱动层结合的弯曲梁的挠曲压电驱动特性。以变​​形曲率半径和切线斜角为基本参数,推导了静力和静载荷作用下叠层曲线智能梁的控制方程。首先,以切线斜率的变形角作为唯一变量推导和解耦平衡方程。然后利用谐波函数给出了层合弯曲智能梁的解析解。最后,通过这种方法和有限元方法计算出了叠层弯曲智能梁的静态变形。结果显示出良好的一致性,并表明了本方法的有效性。进一步研究了覆盖压电层的圆形和螺旋形梁。还探讨了半径,厚度比和堆叠顺序对压电叠层梁挠度的影响。

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