Shear Elasticity of Magnetic Gels with Internal Structures

We present the results of the theoretical modeling of the elastic shear properties of a magnetic gel, consisting of soft matrix and embedded, fine magnetizable particles, which are united in linear chain-like structures. We suppose that the composite is placed in a magnetic field, perpendicular to t...

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Main Authors: Dmitry Borin, Dmitri Chirikov, Andrey Zubarev
Format: Article
Language:English
Published: MDPI AG 2018-06-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/18/7/2054
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author Dmitry Borin
Dmitri Chirikov
Andrey Zubarev
author_facet Dmitry Borin
Dmitri Chirikov
Andrey Zubarev
author_sort Dmitry Borin
collection DOAJ
description We present the results of the theoretical modeling of the elastic shear properties of a magnetic gel, consisting of soft matrix and embedded, fine magnetizable particles, which are united in linear chain-like structures. We suppose that the composite is placed in a magnetic field, perpendicular to the direction of the sample shear. Our results show that the field can significantly enhance the mechanical rigidity of the soft composite. Theoretical results are in quantitative agreement with the experiments.
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spelling doaj.art-181b4e5e31444974b16010ac48963e0b2022-12-22T02:57:53ZengMDPI AGSensors1424-82202018-06-01187205410.3390/s18072054s18072054Shear Elasticity of Magnetic Gels with Internal StructuresDmitry Borin0Dmitri Chirikov1Andrey Zubarev2Chair of Magnetofluiddynamics, Measuring and Automation Technology, TU Dresden, 01069 Dresden, GermanyDepartment of Theoretical and Mathematical Physics, Ural Federal University, Lenina Ave 51, 620083 Ekaterinburg, RussiaDepartment of Theoretical and Mathematical Physics, Ural Federal University, Lenina Ave 51, 620083 Ekaterinburg, RussiaWe present the results of the theoretical modeling of the elastic shear properties of a magnetic gel, consisting of soft matrix and embedded, fine magnetizable particles, which are united in linear chain-like structures. We suppose that the composite is placed in a magnetic field, perpendicular to the direction of the sample shear. Our results show that the field can significantly enhance the mechanical rigidity of the soft composite. Theoretical results are in quantitative agreement with the experiments.http://www.mdpi.com/1424-8220/18/7/2054magnetic gelsshear moduluschain structuresmagnetorheological effect
spellingShingle Dmitry Borin
Dmitri Chirikov
Andrey Zubarev
Shear Elasticity of Magnetic Gels with Internal Structures
Sensors
magnetic gels
shear modulus
chain structures
magnetorheological effect
title Shear Elasticity of Magnetic Gels with Internal Structures
title_full Shear Elasticity of Magnetic Gels with Internal Structures
title_fullStr Shear Elasticity of Magnetic Gels with Internal Structures
title_full_unstemmed Shear Elasticity of Magnetic Gels with Internal Structures
title_short Shear Elasticity of Magnetic Gels with Internal Structures
title_sort shear elasticity of magnetic gels with internal structures
topic magnetic gels
shear modulus
chain structures
magnetorheological effect
url http://www.mdpi.com/1424-8220/18/7/2054
work_keys_str_mv AT dmitryborin shearelasticityofmagneticgelswithinternalstructures
AT dmitrichirikov shearelasticityofmagneticgelswithinternalstructures
AT andreyzubarev shearelasticityofmagneticgelswithinternalstructures