Low-frequency resonance in laminated FeGa-FeCoGa/Metglas/PZT structures

A. Nosov, I. Gribov, N. Moskvina, A. Druzhinin, S. S. Dubinin, V. V. Izyurov, K. A. Merentsova, M. S. Artemiev
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Abstract

The paper studies the influence of the composition of a thin-film composite magnetostrictive ferromagnet on the magnetoelectric effect (ME) in ferromagnet/piezoelectric/ferromagnet laminated trilayers at resonant frequencies. The PZT material was used in the piezoelectric layer. The graded composite magnetostrictive ferromagnet with a thickness gradient of the magnetostriction coefficient was obtained by pulsed laser deposition of thin Fe0.72Ga0.28 or Fe0.62Co0.19Ga0.19 films on the surface of Metglas-type 440A amorphous ribbons. The ME was investigated at resonant frequencies of 3 and 9.32 kHz. It is shown that the maximum ME value increases with frequency. The deposition of magnetostrictive thin films decreases the maximum ME value, but increases the Q-factor. The results can be useful for developing sensors of static and low-frequency magnetic fields for magnetic nondestructive testing applications under resonant excitation conditions.
FeGa-FeCoGa/ metglass /PZT层压结构的低频共振
本文研究了复合磁致伸缩铁磁薄膜的组成对谐振频率下铁磁/压电/铁磁层合三层材料磁电效应的影响。压电层采用PZT材料。采用脉冲激光沉积方法,在metglass -type 440A非晶带表面制备了Fe0.72Ga0.28或Fe0.62Co0.19Ga0.19薄膜,得到了厚度为磁致伸缩系数梯度的梯度复合磁致伸缩铁磁铁。在3 kHz和9.32 kHz的谐振频率下对ME进行了研究。结果表明,最大ME值随频率的增加而增加。磁致伸缩薄膜的沉积降低了最大ME值,但增加了q因子。研究结果可用于开发静态和低频磁场传感器,用于共振激励条件下的磁性无损检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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