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Optimal unimorph and bimorph configurations of piezocomposite actuators for bending and twisting vibration control of plate structures

机译:压电复合致动器的最佳单压电晶片和双压电晶片配置,用于控制板结构的弯曲和扭曲振动

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摘要

Optimal configuration of anisotropic piezocomposite actuators is investigated for vibration control of flexible structures. Actuation effects of the actuators in unimorph and antisymmetric angle-ply bimorph configurations are analyzed. Dynamic equations of the piezo-actuated plate are established using finite element method. The locations and lead zirconate titanate fiber orientations of actuators are optimized simultaneously to improve vibration control performance of a plate. The optimization criterion is presented based on controllability Gramian matrix of the system. The properties of macro-fiber composite are used in the simulations of the actuators. The optimal unimorph and bimorph configurations of actuators are presented for three cases: bending control, twisting control, and coupled bending-twisting control. The results indicate that both optimal locations and fiber orientations are different for bending control and twisting control. A trade-off between control authority for bending and torsional modes can be found in coupled bending-twisting control. The actuators should be placed in the regions of high average strain of the interested modes with appropriate fiber orientations. Special piezocomposite actuators with optimal fiber orientations can be used to achieve improved coupled bending-twisting vibration control performance.
机译:研究了各向异性压电复合驱动器的最佳配置,以控制柔性结构的振动。分析了单压电晶片和反对称角铺层双压电晶片配置中执行器的执行效果。利用有限元方法建立了压电驱动板的动力学方程。同时优化了执行器的位置和锆钛酸铅钛纤维的取向,以改善板的振动控制性能。根据系统的可控制性格莱姆矩阵,提出了优化准则。大纤维复合材料的特性被用于执行器的仿真中。针对三种情况,给出了执行器的最佳单压电晶片和双压电晶片配置:弯曲控制,扭转控制和耦合弯曲扭转控制。结果表明,弯曲控制和扭曲控制的最佳位置和纤维取向都不同。在耦合弯曲扭曲控制中可以找到弯曲模式和扭转模式的控制权限之间的权衡。应将执行器放置在感兴趣模式的平均应变较高的区域,并具有适当的光纤方向。具有最佳纤维取向的特殊压电复合驱动器可用于实现改进的耦合弯曲扭曲振动控制性能。

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