Finite Element Modeling of Magnetoelectric Sensors

The magnetoelectric effect, stemming from piezoelectric and magnetostrictive materials composite, is studied. A model based on the association of magnetoelastic and piezo-electric constitutive laws is presented. This model is implemented in a finite element formulation and a comparison with analytic...

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Published inIEEE transactions on magnetics Vol. 44; no. 6; pp. 834 - 837
Main Authors Galopin, Nicolas, Mininger, Xavier, Bouillault, Frederic, Daniel, Laurent
Format Journal Article Conference Proceeding
LanguageEnglish
Published New York, NY IEEE 01.06.2008
Institute of Electrical and Electronics Engineers
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Subjects
Online AccessGet full text
ISSN0018-9464
1941-0069
DOI10.1109/TMAG.2008.915781

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Abstract The magnetoelectric effect, stemming from piezoelectric and magnetostrictive materials composite, is studied. A model based on the association of magnetoelastic and piezo-electric constitutive laws is presented. This model is implemented in a finite element formulation and a comparison with analytical solutions for piezoelectric/magnetostrictive composite is realized. A magnetoelectric displacement sensor is finally studied.
AbstractList The magnetoelectric effect, stemming from piezoelectric and magnetostrictive materials composite, is studied. A model based on the association of magnetoelastic and piezo-electric constitutive laws is presented. This model is implemented in a finite element formulation and a comparison with analytical solutions for piezoelectric/magnetostrictive composite is realized. A magnetoelectric displacement sensor is finally studied.
The magnetoelectric effect, stemming from piezoelectric and magnetostrictive materials composite, is studied. A model based on the association of magnetoelastic and piezo-electric constitutive laws is presented. This model is implemented [abstract truncated by publisher].
Author Bouillault, Frederic
Daniel, Laurent
Mininger, Xavier
Galopin, Nicolas
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  givenname: Laurent
  surname: Daniel
  fullname: Daniel, Laurent
  organization: Lab. de Genie Electr. de Paris, Univ Paris-Sud France, Paris
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10.1109/TUFFC.2003.1244741
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10.1109/PROC.1967.5887
10.1109/20.376404
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10.1051/epjap:2006102
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Keywords Finite element method
Magnetostriction
magnetoelectric sensors
Finite element formulation
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piezoelectric
Magnetic properties
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SubjectTerms Cross-disciplinary physics: materials science; rheology
Displacement
Engineering Sciences
Exact sciences and technology
Finite element formulation
Finite element method
Finite element methods
Magnetic analysis
Magnetic field induced strain
Magnetic flux
Magnetic materials
Magnetic sensors
Magnetic separation
Magnetism
Magnetoelasticity
magnetoelectric sensors
Magnetostriction
Materials science
Mathematical analysis
Mathematical models
Other topics in materials science
Physics
piezoelectric
Piezoelectricity
Sensors
Stemming
Tensile stress
Title Finite Element Modeling of Magnetoelectric Sensors
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