Pyro- and electromagnetic effects in ferrite/barium titanate composite

New solutions for tensors of effective pyroelectromagnetic properties of piezoactive composites on the basis of boundary value problem solution for electromagnetic elasticity have been obtained. For the solution of the boundary value problem, new solutions for singular components of the second deriv...

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Main Author: Andrey A. Pan'kov
Format: Article
Language:English
Published: Pensoft Publishers 2016-09-01
Series:Modern Electronic Materials
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2452177916300913
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spelling doaj-1cb3217ba57a47a7b5f9b96e4f59864f2021-04-02T11:21:48ZengPensoft PublishersModern Electronic Materials2452-17792016-09-0123899310.1016/j.moem.2016.12.005Pyro- and electromagnetic effects in ferrite/barium titanate compositeAndrey A. Pan'kovNew solutions for tensors of effective pyroelectromagnetic properties of piezoactive composites on the basis of boundary value problem solution for electromagnetic elasticity have been obtained. For the solution of the boundary value problem, new solutions for singular components of the second derivative Green functions for displacements, electric and magnetic potentials in homogeneous transversal isotropic piezoelectromagnetic medium with ellipsoidal grain of heterogeneity have been used. Calculation results on the concentration dependences for effective coefficients of pyromagnetic and electromagnetic coherence of ferrite/barium titanate composite with ellipsoidal, spherical and fibrous inclusions for various polydisperse structures and those of a layered structure composite have been presented. Considerable influence of the shape of the inclusions, features of relative positioning and inversion of the properties of phases on the effective coefficients of pyromagnetic and electromagnetic coherence of the composite material have been revealed. The conclusion is drawn on the preferable use of the pyroelectric phase as spherical inclusions, and ferrite as the composite matrix. This allows for more than a fivefold increase in the effective constant of pyromagnetic coherence of the composite material in comparison with its value for the same structure but with inversion of properties of phases for constant volume fractions of the ferrite and pyroelectric phases.http://www.sciencedirect.com/science/article/pii/S2452177916300913PiezocompositeBoundary value problem of electromagnetic elasticityEffective pyroelectric properties
collection DOAJ
language English
format Article
sources DOAJ
author Andrey A. Pan'kov
spellingShingle Andrey A. Pan'kov
Pyro- and electromagnetic effects in ferrite/barium titanate composite
Modern Electronic Materials
Piezocomposite
Boundary value problem of electromagnetic elasticity
Effective pyroelectric properties
author_facet Andrey A. Pan'kov
author_sort Andrey A. Pan'kov
title Pyro- and electromagnetic effects in ferrite/barium titanate composite
title_short Pyro- and electromagnetic effects in ferrite/barium titanate composite
title_full Pyro- and electromagnetic effects in ferrite/barium titanate composite
title_fullStr Pyro- and electromagnetic effects in ferrite/barium titanate composite
title_full_unstemmed Pyro- and electromagnetic effects in ferrite/barium titanate composite
title_sort pyro- and electromagnetic effects in ferrite/barium titanate composite
publisher Pensoft Publishers
series Modern Electronic Materials
issn 2452-1779
publishDate 2016-09-01
description New solutions for tensors of effective pyroelectromagnetic properties of piezoactive composites on the basis of boundary value problem solution for electromagnetic elasticity have been obtained. For the solution of the boundary value problem, new solutions for singular components of the second derivative Green functions for displacements, electric and magnetic potentials in homogeneous transversal isotropic piezoelectromagnetic medium with ellipsoidal grain of heterogeneity have been used. Calculation results on the concentration dependences for effective coefficients of pyromagnetic and electromagnetic coherence of ferrite/barium titanate composite with ellipsoidal, spherical and fibrous inclusions for various polydisperse structures and those of a layered structure composite have been presented. Considerable influence of the shape of the inclusions, features of relative positioning and inversion of the properties of phases on the effective coefficients of pyromagnetic and electromagnetic coherence of the composite material have been revealed. The conclusion is drawn on the preferable use of the pyroelectric phase as spherical inclusions, and ferrite as the composite matrix. This allows for more than a fivefold increase in the effective constant of pyromagnetic coherence of the composite material in comparison with its value for the same structure but with inversion of properties of phases for constant volume fractions of the ferrite and pyroelectric phases.
topic Piezocomposite
Boundary value problem of electromagnetic elasticity
Effective pyroelectric properties
url http://www.sciencedirect.com/science/article/pii/S2452177916300913
work_keys_str_mv AT andreyapankov pyroandelectromagneticeffectsinferritebariumtitanatecomposite
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