In the context of wireless magnetoelectric devices based on functional dielectrics, this paper focuses on investigating the magnetoelectric response of a magnetic actuator by comparing simulation results and experimental results. Multiphysics modeling of the magnetic actuator – composed of a piezoelectric bender coated with silver electrodes, a lock-in amplifier and magnetic poles – is carried out using the finite-element method and multiphysics modules. Due to the direct coupling of the piezoelectric layer and the Lorentz force induced by eddy currents in the silver electrodes, a magnetoelectric voltage was generated on the suspended piezoelectric bender. The good agreement between the experimental data and the simulation results demonstrates the coupling between eddy-current-induced Lorentz forces in the silver electrodes and the piezoelectric layer. The proposed prototype is based on the magnetoelectric functional dielectric without the magnetic phase and also without applying a power source, so that it could be low cost, have linear feedback and be practical. These features make it a candidate prototype for a new type of magnetoelectric actuators and sensors.
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27 March 2018
Research Article|
January 05 2018
Modeling on magnetoelectric effect of functional piezoelectric dielectric
Jia-Wei Zhang, PhD;
Northeast Electric Power University, Jilin City, China; Key Laboratory of Engineering Dielectric and Its Application of Ministry of Education, Harbin University of Science and Technology, Harbin, China; Key Laboratory of Silicon Device Technology, Chinese Academy of Sciences, Beijing, China
(corresponding author: jiawei8633@163.com)
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Hong-Yan Guo;
Hong-Yan Guo
Master student
Northeast Electric Power University, Jilin City, China
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Wei-Xing Geng;
Wei-Xing Geng
Senior Engineer
State Grid Ningxia Electric Power Corporation, Maintenance Company, Ningxia, China
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Chun-Ling Liu;
Chun-Ling Liu
Senior Engineer
State Grid Ningxia Electric Power Corporation, Maintenance Company, Ningxia, China
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Rui-Tong Liu
Rui-Tong Liu
Engineer
State Grid Liaoning Province Power Company Limited, Power Research Institute, Shenyang, China
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(corresponding author: jiawei8633@163.com)
Publisher: Emerald Publishing
Received:
May 19 2017
Accepted:
December 01 2017
Online ISSN: 2046-0155
Print ISSN: 2046-0147
ICE Publishing: All rights reserved
2018
Emerging Materials Research (2018) 7 (1): 4–9.
Article history
Received:
May 19 2017
Accepted:
December 01 2017
Citation
Zhang J, Guo H, Geng W, Liu C, Liu R (2018), "Modeling on magnetoelectric effect of functional piezoelectric dielectric". Emerging Materials Research, Vol. 7 No. 1 pp. 4–9, doi: https://doi.org/10.1680/jemmr.17.00033
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