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Topology optimization of a piezoelectric-mechanical actuator with single- and multiple-frequency excitation

机译:具有单频和多频激励的压电机械致动器的拓扑优化

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摘要

We present the topology optimization of an assembly consisting of a piezoelectric layer attached to a plate with support. The optimization domain is the piezoelectric layer. Using the SIMP (Solid Isotropic Material with Penalization) method with forced vibrations by harmonic electrical excitation, we achieve a maximization of the dynamic displacement. We show that the considered objective function can be used under certain boundary conditions to optimize the sound radiation. The vibrational patterns resulting from the optimization are analysed in comparison with the modes from an eigenvalue analysis. Multiple-frequency optimization is achieved by adaptive weighted sums. As a second optimization criterion, a flat frequency response is integrated in the optimization process.
机译:我们介绍了一个组件的拓扑优化,该组件由附接到带有支撑板的压电层组成。优化域是压电层。使用具有谐波电激励的强制振动的SIMP(带罚分的固体各向同性材料)方法,可以实现动态位移的最大化。我们表明,可以在某些边界条件下使用考虑的目标函数来优化声辐射。与本征值分析的模式相比较,分析了优化产生的振动模式。多频率优化是通过自适应加权和实现的。作为第二优化标准,在优化过程中集成了平坦的频率响应。

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