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Piezoelectric shell FE for the static and dynamic analysis of piezoelectric fibre composite laminates

机译:压电壳FE用于压电纤维复合材料层合板的静态和动态分析

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摘要

A piezoelectric multilamina shell FE developed to model thin walled structures with piezoelectric fibre composites polarized with interdigitated electrodes (PFCPIE) is proposed in this paper. A new scheme for the interpolation of the electric field is presented. The electric field in each lamina lies parallel to the lamina plane and coincides with the poling direction. Each piezoelectric lamina admits an arbitrary poling direction. Based on Reissner–Mindlin assumptions and a multilaminate approach, the element employs a single layer assumption for the mechanical displacements and a layerwise constant electric potential. An MITC strategy is used to avoid shear locking. Two static examples are presented. The first is a cantilever piezoactuated beam and the second a single cell closed box beam with piezoelectric actuators. The results obtained for the cantilever beam with the present formulation are compared with those obtained with native ABAQUS plane stress elements and an analytical solution. For the closed box beam the numerical results were compared with experimental results from the literature. Very encouraging results are obtained in both cases. Finally, for the piezoactuated closed box beam, the FE model is used to obtain a state space model (SS). Based on the SS model, the design of the control system and the assessment of the system performance are carried out. Important systems characteristics are captured by the model, i.e. attenuation levels, frequency response and control voltage levels. This reveals that the proposed FE can be used to model and assess structural behaviour in a relatively simple and efficient way.
机译:提出了一种压电多层板壳FE,该模型用于建模带有指状电极极化的压电纤维复合材料(PFCPIE)的薄壁结构。提出了一种内插电场的新方案。每个薄片中的电场平行于薄片平面并与极化方向一致。每个压电薄片都允许任意极化方向。基于Reissner-Mindlin的假设和多层方法,该元件采用单层假设作为机械位移和分层恒定电势。 MITC策略用于避免剪切锁定。给出两个静态示例。第一个是悬臂压电致动梁,第二个是带有压电致动器的单室封闭箱形梁。将本发明配方的悬臂梁的结果与天然ABAQUS平面应力元件和分析溶液的结果进行比较。对于封闭箱形梁,将数值结果与文献中的实验结果进行了比较。在这两种情况下都获得了非常令人鼓舞的结果。最后,对于压电驱动的封闭箱梁,FE模型用于获得状态空间模型(SS)。基于SS模型,进行了控制系统的设计和系统性能的评估。该模型捕获了重要的系统特性,即衰减水平,频率响应和控制电压水平。这表明所提出的有限元可用于以相对简单和有效的方式对结构行为进行建模和评估。

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