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首页> 外文期刊>Journal of intelligent material systems and structures >Integrated Optimization of Material Layout and Control Voltage for Piezoelectric Laminated Plates
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Integrated Optimization of Material Layout and Control Voltage for Piezoelectric Laminated Plates

机译:压电层压板的材料布局和控制电压的集成优化

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摘要

Topology optimization techniques have recently been successfully applied to the design of piezoelectric smart structures. However, in previous formulations, the material layout is optimized under the condition of given electric actuation voltages. This imposes a restriction to the design problem and may consequently limit application of these approaches, particularly in complex shape control problems. The present article investigates the integrated optimization of structural topology and control voltage of piezoelectric laminated plates. The finite element analysis formulation of laminated plates with surface bonded piezoelectric layers is introduced first. The optimal design problem is then formulated based on an artificial material model with penalization for both mechanical and piezoelectric properties. In the formulated problem, the topologies of both host and actuation layers are optimized simultaneously with spatial distribution of control voltage. Several special cases of the proposed design problem are considered, and numerical techniques for sensitivity analysis and optimal solutions are proposed. Numerical examples are presented to demonstrate the validity and applicability of the proposed methods.
机译:拓扑优化技术最近已成功地应用于压电智能结构的设计。但是,在先前的公式中,材料布局是在给定的电驱动电压的条件下进行优化的。这对设计问题施加了限制,并因此可能限制了这些方法的应用,尤其是在复杂的形状控制问题中。本文研究了压电叠层板的结构拓扑和控制电压的综合优化。首先介绍了表面粘结压电层的叠层板的有限元分析公式。然后,基于人工材料模型对机械和压电性能都进行了惩罚,从而提出了最佳设计问题。在提出的问题中,通过控制电压的空间分布同时优化主机层和驱动层的拓扑。考虑了所提出设计问题的几种特殊情况,并提出了用于灵敏度分析和最佳解决方案的数值技术。数值算例表明了所提方法的有效性和适用性。

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