Theory of magnetic force driven magnetoelectric effect in piezo-bimorph/ferrite cantilever composite

A theoretical model is proposed for the frequency response of the magnetic force driven (MFD) magnetoelectric (ME) effect in a piezo-bimorph/ferrite cantilever based on the elastodynamics method, which agrees well with the experimental results for Pb(Zr, Ti)O3-bimorph/Mn–Zn-ferrite cantilever compos...

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Main Authors: Gaojian Wu, Ru Zhang
Format: Article
Language:English
Published: AIP Publishing LLC 2021-04-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/5.0041753
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author Gaojian Wu
Ru Zhang
author_facet Gaojian Wu
Ru Zhang
author_sort Gaojian Wu
collection DOAJ
description A theoretical model is proposed for the frequency response of the magnetic force driven (MFD) magnetoelectric (ME) effect in a piezo-bimorph/ferrite cantilever based on the elastodynamics method, which agrees well with the experimental results for Pb(Zr, Ti)O3-bimorph/Mn–Zn-ferrite cantilever composites. Based on the theoretical model, the dependences of the resonant ME voltage coefficient on geometrical and material parameters of the piezo-bimorph/ferrite cantilever composite are numerically calculated. The results show that an optimum resonant ME effect can be achieved by adjusting the structural and material parameters in the piezo-bimorph/ferrite cantilever composite. This research lays a theoretical basis for understanding the resonant ME effect in the piezo-bimorph/ferrite composite and optimal design of the MFD-ME device based on this configuration.
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spelling doaj.art-ae271c50cf89435d8223f8e145ba9a972022-12-21T19:05:42ZengAIP Publishing LLCAIP Advances2158-32262021-04-01114045113045113-710.1063/5.0041753Theory of magnetic force driven magnetoelectric effect in piezo-bimorph/ferrite cantilever compositeGaojian Wu0Ru Zhang1Department of Physics, Nanjing Tech University, 211816 Nanjing, People’s Republic of ChinaDepartment of Physics, Nanjing Tech University, 211816 Nanjing, People’s Republic of ChinaA theoretical model is proposed for the frequency response of the magnetic force driven (MFD) magnetoelectric (ME) effect in a piezo-bimorph/ferrite cantilever based on the elastodynamics method, which agrees well with the experimental results for Pb(Zr, Ti)O3-bimorph/Mn–Zn-ferrite cantilever composites. Based on the theoretical model, the dependences of the resonant ME voltage coefficient on geometrical and material parameters of the piezo-bimorph/ferrite cantilever composite are numerically calculated. The results show that an optimum resonant ME effect can be achieved by adjusting the structural and material parameters in the piezo-bimorph/ferrite cantilever composite. This research lays a theoretical basis for understanding the resonant ME effect in the piezo-bimorph/ferrite composite and optimal design of the MFD-ME device based on this configuration.http://dx.doi.org/10.1063/5.0041753
spellingShingle Gaojian Wu
Ru Zhang
Theory of magnetic force driven magnetoelectric effect in piezo-bimorph/ferrite cantilever composite
AIP Advances
title Theory of magnetic force driven magnetoelectric effect in piezo-bimorph/ferrite cantilever composite
title_full Theory of magnetic force driven magnetoelectric effect in piezo-bimorph/ferrite cantilever composite
title_fullStr Theory of magnetic force driven magnetoelectric effect in piezo-bimorph/ferrite cantilever composite
title_full_unstemmed Theory of magnetic force driven magnetoelectric effect in piezo-bimorph/ferrite cantilever composite
title_short Theory of magnetic force driven magnetoelectric effect in piezo-bimorph/ferrite cantilever composite
title_sort theory of magnetic force driven magnetoelectric effect in piezo bimorph ferrite cantilever composite
url http://dx.doi.org/10.1063/5.0041753
work_keys_str_mv AT gaojianwu theoryofmagneticforcedrivenmagnetoelectriceffectinpiezobimorphferritecantilevercomposite
AT ruzhang theoryofmagneticforcedrivenmagnetoelectriceffectinpiezobimorphferritecantilevercomposite