Magnetoelectric characteristics of cobalt-iron alloy–lead zirconate titanate bilayer planar structures

Author:

Hörner Eduard1,Krykanov Ivan M.2,Chashin Dmitry V.2,Fetisov Yury K.2,Fetisov Leonid Y.3,Shamonin Mikhail1

Affiliation:

1. a Regensburg University of Applied Sciences, Faculty of Electrical Engineering and Information Technology, Regensburg, Germany

2. b Moscow State Technical University of Radio Engineering, Electronics & Automation, Moscow, Russia

3. c Moscow M.V. Lomonosov State University, Faculty of Physics, Moscow, Russia

Abstract

AbstractThe characteristics of both direct and converse magnetoelectric (ME) interactions in bilayer composite structures comprising layers of a commercially available magnetostrictive permendur CoFe alloy and different piezoelectric PZT ceramics are investigated in detail by the method of harmonic field modulation. It is shown that, given the optimum DC magnetic bias field, a high piezomagnetic coefficient in the alloy leads to increased efficiency of ME interactions. The resonant behavior of frequency dependencies of the magnetoelectric voltage is explained by excitation of bending and planar mechanical oscillations in the structures. The results are of interest for developing highly sensitive AC magnetic field sensors and magnetoelectric transducers for energy harvesting from mechanical vibrations.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,Metals and Alloys,Physical and Theoretical Chemistry,Condensed Matter Physics

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