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Finite Element Model of Smart Beams with Distributed Piezoelectric Actuators

机译:分布式压电致动器智能梁的有限元模型

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In the present work, the static and the dynamic analysis of intelligent advanced beams structures with piezoelectric actuators have been studied. The structure substrate is made of isotropic and/or anisotropic materials, subjected to axial and transverse mechanical loads as well as electrical load. The actuators' layers are made of piezoelectric material of PZT type. The model is able to solve the structure with piezoelectric actuators either patches or completely covers the structure; in the upper or lower surface or impeded in the structure. The classical laminate theory is used to represent the deformation of the lamination for each considered structure. The ID isoperimetric Hermit cubic shape functions and the Lagrange interpolation functions are used to formulate the finite element model for the distributed coupled electromechanical behavior. The equations of motion of each structure system is obtained by using the principle of total potential energy considering the Euler-Bernoulli beam assumptions. A Matlab code is prepared to perform the analysis of such beams. The results of the proposed finite element model for each structure are compared to the available finite element and analytical results of other investigators, good agreement is generally obtained.
机译:在目前的工作中,已经研究了带有压电致动器的智能先进梁结构的静态和动态分析。结构基板由各向同性和/或各向异性的材料制成,承受轴向和横向机械载荷以及电载荷。执行器的各层由PZT型压电材料制成。该模型能够用压电致动器来解决结构,该压电致动器要么是补丁,要么是完全覆盖了结构;在上,下表面或在结构中受阻。经典层压理论用于表示每种考虑结构的层压变形。使用等距ID的Hermit三次函数和Lagrange插值函数来为分布式耦合机电行为建立有限元模型。通过考虑欧拉-伯努利梁假设,利用总势能原理获得每个结构系统的运动方程。准备Matlab代码以执行此类光束的分析。将所提出的每种结构的有限元模型的结果与可用的有限元和其他研究人员的分析结果进行比较,通常会获得良好的一致性。

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