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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Energy Integration Method for Calculating keff and its Application in Design Optimization of Disk Resonators via Convex Edge
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Energy Integration Method for Calculating keff and its Application in Design Optimization of Disk Resonators via Convex Edge

机译:通过凸缘计算Keff的能量集成方法及其在磁盘谐振器设计优化中的应用

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摘要

Piezoelectric resonators have been extensively used as filters, actuator, and sensors. The effective electromechanical coupling coefficient (k(eff)) is the most useful parameter to evaluate the electromechanical conversion efficiency of piezoelectric resonators. However, even for simple geometry piezoelectric resonators, such as disks, the coupling between different modes makes the resonant characteristics very complex. The coupling causes low electromechanical coupling efficiency of the intended mode. We propose a finite-element-based energy integration method to calculate k(eff) of piezoelectric resonators. This method is more accurate than the conventional resonance-antiresonance method and provides a powerful tool for the design optimization of pure mode resonators. A special case studied here is the fundamental thickness extensional (TE) mode of PZT-8 disks in the aspect ratio range of 2-20. Our results showed that multimode coupling near this mode can be greatly suppressed by modifying the edge surface of the disk to a convex shape. Such an optimized design could enhance k(eff) of the fundamental TE mode by as much as 10%-45% depending on the aspect ratio.
机译:压电谐振器已广泛用作过滤器,执行器和传感器。有效的机电耦合系数(K(EFF))是评价压电谐振器的机电转换效率最有用的参数。然而,即使对于简单的几何压电谐振器,例如磁盘,不同模式之间的耦合使得谐振特性非常复杂。耦合导致预期模式的低机电耦合效率。我们提出了一种基于有限元的能量集成方法来计算压电谐振器的K(EFF)。该方法比传统的共振反线谐振方法更准确,为纯模式谐振器的设计优化提供了强大的工具。这里研究的特殊情况是PZT-8磁盘的基本厚度延伸(TE)模式在2-20的纵横比范围内。我们的结果表明,通过将磁盘的边缘表面修改为凸形,可以大大抑制该模式附近的多模耦合。这种优化的设计可以通过纵横比增强基本TE模式的K(EFF),这取决于纵横比。

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