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首页> 外文期刊>Integrated Ferroelectrics >Tuning of Ring-Shaped Piezoelectric-Transformer Efficacies by Structural and Electrode Design: Finite Element Diagnosis
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Tuning of Ring-Shaped Piezoelectric-Transformer Efficacies by Structural and Electrode Design: Finite Element Diagnosis

机译:通过结构和电极设计调整环形压电变压器的效率:有限元诊断

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In this work, Finite Element method (FEM) was used to model ring-shaped piezoelectric-transformers, using piezoelectric parameters from PZT-5H and having polarization along thickness direction. The resonator with full-covered electrode on top and bottom areas of the ring was firstly considered to investigate the dimensional effect on available vibrational modes. For modes above the fundamental, the results show that with increasing the ring thickness, the vibrational modes shift to lower frequencies. Similarly, with increasing the width, the resonant frequencies reduce. On the other hand, with increasing the ring-radius while keeping the width fixed, the resonant modes maintain. Eigenmode diagram of these resonant frequencies was also presented as databases for future use. Further, to enhance the power transferring efficiency, the electrode layouts were investigated where input and output electrodes were designed to correspond with electrical distribution of desired vibrational modes. The alternating and non-alternating electrode layouts were considered in this work. With the lumped-equivalent circuit model, the results show significant improvement of the considered resonant modes due to the enhancing of charge accumulation on the electrodes. In addition, the alternating electrode gives electromechanical coupling coefficient higher than that of the non-alternating electrode when operated at the same condition. This therefore implies the alternating electrode layout, corresponding to the electrical distribution of a particular vibrational mode, suggesting itself as a promising choice for implementation to achieve highly efficient piezoelectric-transformer.
机译:在这项工作中,使用有限元方法(FEM)对环形压电变压器建模,该压电变压器使用PZT-5H的压电参数并沿厚度方向极化。首先考虑了在环的顶部和底部具有完全覆盖电极的谐振器,以研究尺寸对可用振动模式的影响。对于高于基本频率的振型,结果表明,随着振铃厚度的增加,振动振型移至更低的频率。同样,随着宽度的增加,谐振频率也会降低。另一方面,在增加环半径的同时保持宽度固定,谐振模式得以维持。这些共振频率的本征模式图也作为数据库提供,以备将来使用。此外,为了提高功率传输效率,研究了电极布局,其中输入和输出电极被设计为与所需振动模式的电分布相对应。在这项工作中考虑了交替和非交替的电极布局。使用集总等效电路模型,结果表明由于增强了电极上电荷的积累,所考虑的谐振模式有了显着改善。另外,当在相同条件下操作时,交流电极的机电耦合系数高于非交流电极的机电耦合系数。因此,这意味着对应于特定振动模式的电分布的交替电极布局,表明其本身是实现高效压电变压器的有前途的选择。

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