Observation of nonlinear magnetoelectric response to magnetic pulses in layered magnetostrictive-piezoelectric structures

F. Kreitmeier, I. Schulz, G. Monkman, M. Shamonin, Y. Fetisov, D. Chashin, L. Fetisov
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引用次数: 2

Abstract

A detailed experimental study of the magnetoelectric response of planar bi- and symmetric trilayer composite structures to magnetic field pulses is reported. The structures consist of layers of commercially available piezoelectric (lead zirconate titanate) and magnetostrictive (permendur or nickel) materials. The magnetic-field pulses have the form of a half-wave sine function with duration of 450 μs and amplitude from 500 Oe up to 38 kOe. The measurement method is explained and the measured time dependence of the resulting voltage is presented. The most interesting case, when pulse amplitudes are sufficiently large (~ 1-10 kOe) and various types of acoustic oscillation with frequencies much larger than the reciprocal pulse length are excited in the structures, is considered. The dependencies of the magnetoelectric voltage coefficient on the excitation frequency and the applied magnetic field are calculated. By digital signal processing the results are compared with those obtained by the method of harmonic field modulation (HFM). The findings are of interest for developing magnetoelectric sensors for pulsed magnetic fields as well as for rapid characterization of magnetoelectric composite structures.
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层状磁致伸缩压电结构对磁脉冲非线性磁电响应的观察
本文报道了平面双、对称三层复合材料结构对磁场脉冲的磁电响应的详细实验研究。该结构由商业上可用的压电(锆钛酸铅)和磁致伸缩(永动机或镍)材料层组成。磁场脉冲为半波正弦函数,持续时间为450 μs,振幅为500 ~ 38 μ e。说明了测量方法,并给出了测量电压的时间依赖性。最有趣的情况是,当脉冲幅值足够大(~ 1-10 kOe),并且在结构中激发了频率远大于脉冲倒数长度的各种类型的声波振荡。计算了磁电电压系数与励磁频率和外加磁场的关系。通过数字信号处理,将所得结果与谐波调制(HFM)方法所得结果进行了比较。这些发现对于开发用于脉冲磁场的磁电传感器以及快速表征磁电复合结构具有重要意义。
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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