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Static analysis of a multilayer piezoelectric actuator with bonding layers and electrodes

机译:具有粘结层和电极的多层压电致动器的静态分析

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Based on the theory of piezoelasticity, an analytical solution for a typical multilayer piezoelectric composite cantilever is obtained by the Airy function method. The piezoelectric cantilever may consist of any number of layers. Moreover, the material and thickness for different layers may be different. The solution obtained in the present paper is concise and can be easily applied for the bending analysis of multilayer piezoelectric actuators considering the effect of bonding layers and electrodes. At last, a comprehensive parametric study is conducted to show the influence of electromechanical coupling (EMC), the number of piezoelectric layers, the elastic modulus of elastic layer and the thickness ratio on the bending behavior of actuators. Some interesting results for the design of multilayer piezoelectric actuators are presented.
机译:基于压电弹性理论,通过艾里函数方法获得了典型的多层压电复合材料悬臂梁的解析解。压电悬臂可以由任何数量的层组成。而且,不同层的材料和厚度可以不同。本文获得的解决方案简洁明了,考虑到粘结层和电极的影响,可以很容易地应用于多层压电致动器的弯曲分析。最后,进行了全面的参数研究,以显示机电耦合(EMC),压电层数,弹性层的弹性模量和厚度比对执行器弯曲行为的影响。提出了一些有趣的设计多层压电致动器的结果。

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