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Finite Element Modeling of Ring-Shaped Piezoelectric Transformer

机译:环形压电变压器的有限元建模

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摘要

In this work, we developed a finite element package to investigate the dependence of electromechanical coupling coefficient on ring-shaped piezoelectric transformer parameters, and proposed how to design the transformer in achieving optimum efficiency using the ceramic PZT-5H as an application. The ring transformer firstly used full driven electrode to observe piezoelectric vibration characteristic with varying the ring dimensional (structural) parameters. Then, with the optimized ring parameters, electrode layout was designed in accordance to the distribution of electrical potential within the ring transformer, where both alternating and non-alternating electrode layouts were considered. From the calculation, results showed that the piezoelectric vibration characteristic strongly depends on the ring-shaped transformer dimension. Specifically, with increasing piezoelectric ceramic thickness and the width between inner- and outer-ring-radius, the resonance frequencies of the transformer decrease. On the other hand, in terms of the electrode layouts, the alternating electrode was a better choice in obtaining desired resonance frequency mode, as it provides larger electromechanical coupling coefficient than the non-alternating electrode. These results are in agreement with previous experimental investigation, where applicable.
机译:在这项工作中,我们开发了一个有限元程序包,以研究机电耦合系数对环形压电变压器参数的依赖性,并提出了如何设计陶瓷PZT-5H作为实现最佳效率的变压器。环形变压器首先使用全驱动电极,通过改变环形尺寸(结构)参数来观察压电振动特性。然后,利用优化的环形参数,根据环形变压器内电势的分布设计电极布局,同时考虑交替和非交替电极布局。通过计算,结果表明,压电振动特性很大程度上取决于环形变压器的尺寸。具体地,随着压电陶瓷厚度的增加以及内,外环半径之间的宽度的增加,变压器的谐振频率降低。另一方面,就电极布局而言,交流电极是获得所需谐振频率模式的较好选择,因为它比非交流电极提供更大的机电耦合系数。这些结果与先前的实验研究一致(如果适用)。

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