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Experimental Investigation of the Magnetoelectric Effect in NdFeB-Driven A-Line Shape Terfenol-D/PZT-5A Structures

机译:NDFEB驱动的A线形状Terfenol-D / PZT-5A结构磁电效应的实验研究

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摘要

In this paper, the magnetoelectric (ME) effect is investigated in two kinds of A-line shape Terfenol-D/PZT-5A structures by changing the position of the NdFeB permanent magnet. The experimental results show that both ME composite structures had multiple resonance peaks. For the ME structure with acrylonitrile-butadiene-styrene (ABS) trestles, the resonance peak was different for different places of the NdFeB permanent magnet. Besides, the maximum of the ME coefficient was 4.142 V/A at 32.2 kHz when the NdFeB permanent magnet was on top of the Terfenol-D layer. Compared with the ME coefficient with a DC magnetic field, the ME coefficient with NdFeB magnets still maintained high values in the frequency domain of 65~87 kHz in the ME structure with mica trestles. Through Fourier transform analysis of the transient signal, it is found that the phenomenon of multiple frequencies appeared at low field frequency but not at high field frequency. Moreover, the output ME voltages under different AC magnetic fields are shown. Changing the amplitude of AC magnetic field, the magnitude of the output voltage changed, but the resonant frequency did not change. Finally, a finite element analysis was performed to evaluate the resonant frequency and the magnetic flux distribution characteristics of the ME structure. The simulation results show that the magnetic field distribution on the surface of Terfenol-D is non-uniform due to the uneven distribution of the magnetic field around NdFeB. The resonant frequencies of ME structures can be changed by changing the location of the external permanent magnet. This study may provide a useful basis for the improvement of the ME coefficient and for the optimal design of ME devices.
机译:在本文中,通过改变NdFeB永磁体的位置,以两种型型萜卷-D / PZT-5A结构研究了磁电(ME)效应。实验结果表明,ME复合结构的两个复合结构具有多个共振峰。对于用丙烯腈 - 丁二烯 - 苯乙烯(ABS)梯子的ME结构,对于NDFEB永磁体的不同位置,共振峰不同。此外,当NDFEB永磁体位于三苯酚-D层的顶部时,ME系数的最大值为32.2 kHz。与DC磁场的ME系数相比,ME与NDFEB磁体的系数仍然保持在ME结构中的65〜87 kHz的频域高值,云母塔。通过瞬态信号的傅里叶变换分析,发现多个频率的现象出现在低场频率,但不在高场频率下出现。此外,示出了不同AC磁场下的输出ME电压。改变交流磁场的幅度,输出电压的大小改变,但谐振频率没有变化。最后,进行了有限元分析以评估ME结构的谐振频率和磁通量分布特性。仿真结果表明,由于NDFEB周围的磁场的不均匀分布,Terfenol-D表面上的磁场分布是不均匀的。可以通过改变外部永磁体的位置来改变ME结构的谐振频率。本研究可以为改善ME系数和我的设备的最佳设计提供有用的基础。

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