Nanomechanics of Electrorheological Suspensions with Polymer Dispersed Phase. Quantum-Mechanical Simulation

The microscopic structure and mechanical properties of electrorheological fluids in an electric field were investigated by means of quantum-mechanical computer simulation. Modified polyimides were considered as the solid-phase particles. The simulation was performed for electric fields of different...

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Main Authors: S.M. Nikitin, E.A. Nikitina, Yu.N. Karnet
Format: Article
Language:English
Published: Kazan Federal University 2015-09-01
Series:Учёные записки Казанского университета: Серия Физико-математические науки
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Online Access:https://kpfu.ru/portal/docs/F1719050400/157_3_phys_mat_13.pdf
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author S.M. Nikitin
E.A. Nikitina
Yu.N. Karnet
author_facet S.M. Nikitin
E.A. Nikitina
Yu.N. Karnet
author_sort S.M. Nikitin
collection DOAJ
description The microscopic structure and mechanical properties of electrorheological fluids in an electric field were investigated by means of quantum-mechanical computer simulation. Modified polyimides were considered as the solid-phase particles. The simulation was performed for electric fields of different intensity. The microscopic characteristics of shear deformation (shear modulus) of the electrorheological fluids were considered by varying the chemical structure of the dispersed phase, dielectric permittivity of a viscous medium, magnitude of the shear strain, and concentration of dielectric particles of the solid phase.
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institution Kabale University
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publisher Kazan Federal University
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series Учёные записки Казанского университета: Серия Физико-математические науки
spelling doaj-art-d03171b1d74c418590ceaaae6abf363c2025-01-02T18:55:10ZengKazan Federal UniversityУчёные записки Казанского университета: Серия Физико-математические науки2541-77462500-21982015-09-011573117121Nanomechanics of Electrorheological Suspensions with Polymer Dispersed Phase. Quantum-Mechanical SimulationS.M. Nikitin0E.A. Nikitina1Yu.N. Karnet2Moscow State University, Moscow, 119991 RussiaInstitute of Applied Mechanics, Russian Academy of Sciences, Moscow, 125040 RussiaInstitute of Applied Mechanics, Russian Academy of Sciences, Moscow, 125040 RussiaThe microscopic structure and mechanical properties of electrorheological fluids in an electric field were investigated by means of quantum-mechanical computer simulation. Modified polyimides were considered as the solid-phase particles. The simulation was performed for electric fields of different intensity. The microscopic characteristics of shear deformation (shear modulus) of the electrorheological fluids were considered by varying the chemical structure of the dispersed phase, dielectric permittivity of a viscous medium, magnitude of the shear strain, and concentration of dielectric particles of the solid phase.https://kpfu.ru/portal/docs/F1719050400/157_3_phys_mat_13.pdfelectrorheological fluidsquantum-mechanical simulationpolyimidesshear deformation
spellingShingle S.M. Nikitin
E.A. Nikitina
Yu.N. Karnet
Nanomechanics of Electrorheological Suspensions with Polymer Dispersed Phase. Quantum-Mechanical Simulation
Учёные записки Казанского университета: Серия Физико-математические науки
electrorheological fluids
quantum-mechanical simulation
polyimides
shear deformation
title Nanomechanics of Electrorheological Suspensions with Polymer Dispersed Phase. Quantum-Mechanical Simulation
title_full Nanomechanics of Electrorheological Suspensions with Polymer Dispersed Phase. Quantum-Mechanical Simulation
title_fullStr Nanomechanics of Electrorheological Suspensions with Polymer Dispersed Phase. Quantum-Mechanical Simulation
title_full_unstemmed Nanomechanics of Electrorheological Suspensions with Polymer Dispersed Phase. Quantum-Mechanical Simulation
title_short Nanomechanics of Electrorheological Suspensions with Polymer Dispersed Phase. Quantum-Mechanical Simulation
title_sort nanomechanics of electrorheological suspensions with polymer dispersed phase quantum mechanical simulation
topic electrorheological fluids
quantum-mechanical simulation
polyimides
shear deformation
url https://kpfu.ru/portal/docs/F1719050400/157_3_phys_mat_13.pdf
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AT eanikitina nanomechanicsofelectrorheologicalsuspensionswithpolymerdispersedphasequantummechanicalsimulation
AT yunkarnet nanomechanicsofelectrorheologicalsuspensionswithpolymerdispersedphasequantummechanicalsimulation