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首页> 外文期刊>Journal of magnetism and magnetic materials >Disentangling the power transfer process by non-contact optical measurement in nickel-zinc ferrite/piezoelectric magnetoelectric gyrators
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Disentangling the power transfer process by non-contact optical measurement in nickel-zinc ferrite/piezoelectric magnetoelectric gyrators

机译:在镍 - 锌铁氧体/压电磁电振动器中不接触光学测量解开电力传输过程

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摘要

To precisely position the main energy dissipation sources in ferrite/piezoelectric ME-coil gyrators, the dynamic magneto-mechanical-electric conversion process was disentangled quantitatively by employing a non-contact optical measurement methodology. For the sample fabrication, successful crystallization as well as desired magnetic properties for sintered spinel ferrites was confirmed by XRD and SQUIDs measurements. Trapped magnetic energies in ferrites will convert into kinetic energies accompanying indispensable dissipations in this dynamic process, and the converted kinetic energies can be measured quantitatively in the form of vibrating velocity by focused laser beam. As a result, only ~71% of mechanical energies can be transferred successfully to next layer due to the influence of adhesive in tri-layer sample while the value is 57% for bi-layer one. Finally, comparative studies of low-frequency/resonance ME interactions and power conversion efficiency in tri-layer and bi-layer samples were measured, and an eventual maximum PE of 80.3% under optimum load of 3.5 kΩ was achieved. We infer from the results that the mechanical loss between layers is still a bottleneck to block the efficient energy transfer. These findings provide a deep analysis to reveal the dynamic energy transfer in ME-coil gyrators as well as a flexible pathway for ME gyrators design.
机译:为了精确定位铁氧体/压电ME线圈陀螺器中的主能量耗散源,通过采用非接触光学测量方法定量地解除动态磁力 - 电动转换过程。对于样品制造,通过XRD和鱿鱼测量证实了成功的结晶以及烧结尖晶石铁氧体的所需磁性。铁氧体中的捕集磁能将转换成伴随该动态过程中不可缺陷的不可或缺的耗散的动力,并且可以通过聚焦激光束以振动速度的形式定量地测量转换的动力学能量。结果,由于在三层样品中的粘合剂的影响,仅〜71%的机械能量可以成功转移到下层,而BI层的值为57%。最后,测量了对低频/共振ME相互作用和功率转换效率的比较研究,并在3.5kΩ的最佳载荷下最终PE值为80.3%。我们从结果中推断出层之间的机械损失仍然是阻挡有效能量转移的瓶颈。这些发现提供了深入的分析,以揭示ME-CON-陀螺器中的动态能量转移以及对我来说是助剂设计的灵活途径。

著录项

  • 来源
    《Journal of magnetism and magnetic materials》 |2021年第4期|167680.1-1676807|共7页
  • 作者单位

    College of Electrical and Information Engineering Zhengzhou University of Light Industry Zhengzhou 450002 China;

    College of Electrical and Information Engineering Zhengzhou University of Light Industry Zhengzhou 450002 China;

    College of Electrical and Information Engineering Zhengzhou University of Light Industry Zhengzhou 450002 China;

    Institute of Electronic and Information Systems Novgorod State University Veliky Novgorod 173003 Russia;

    College of Electrical and Information Engineering Zhengzhou University of Light Industry Zhengzhou 450002 China;

    State Grid of Jiangsu Electric Power Co. Ltd. Nanjing 210024 China;

    College of Electrical and Information Engineering Zhengzhou University of Light Industry Zhengzhou 450002 China;

    College of Electrical and Information Engineering Zhengzhou University of Light Industry Zhengzhou 450002 China;

    Physics Department Oakland University Rochester MI 48309 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Magnetoelectric gyrators; Ferrites; Power electronic devices; Energy transfer;

    机译:磁电镀膜;铁氧体;电力电子设备;能量转移;

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