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首页> 外文期刊>Journal of magnetism and magnetic materials >Production of vibration energy harvester with impact-sliding structure using magnetostrictive Fe-Co-V alloy rod
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Production of vibration energy harvester with impact-sliding structure using magnetostrictive Fe-Co-V alloy rod

机译:使用磁致伸缩Fe-Co-V合金棒产生振动能量收割机的振动能量收割机

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摘要

In this work, an axial-type vibration energy harvester with an impact-sliding structure that uses a magnetostrictive Permendur (Fe-Co-V) rod was produced and its power generation properties were measured. It was found that all the peak frequencies analyzed using the FFT method from the experimentally obtained voltage waveforms were consistent with the calculated inherent frequencies of the axial vibration of the rod. Therefore, the power generation by the proposed harvester likely resulted from the inherent axial vibration of the magnetostrictive rod. Furthermore, the maximum output energy obtained in this work was 1592μJ, which was generated by a harvester with 3000 coil turns and two magnets under a load resistance of 3 kΩ. It was found that the maximum output energy was generated when the load resistance was close to the coil impedance at the inherent frequency of the axial vibration of the rod.
机译:在这项工作中,产生具有使用磁致伸缩偏移(Fe-Co-V)棒的冲击滑动结构的轴向型振动能量收割机,并测量其发电特性。发现使用来自实验所获得的电压波形的FFT方法分析的所有峰值频​​率与杆的轴向振动的计算的固有频率一致。因此,所提出的收割机的发电可能是由于磁致伸缩杆的固有轴向振动引起的。此外,在该工作中获得的最大输出能量为1592μJ,由带有3000个线圈的收割机产生的Harvester和两个磁铁在3kΩ的负载电阻下产生。发现当负载电阻在杆的轴向振动的固有频率下靠近线圈阻抗时,产生最大输出能量。

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