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Light Diffraction and Attenuation in Magnetic Emulsions with Low Interfacial Tension

The work is devoted to studying the phenomena of light diffraction and attenuation in magnetic emulsions with low interfacial tension based on AMG-10 hydraulic oil under the action of magnetic and hydrodynamic fields. An interpretation of the phenomena has been proposed on the basis of the anomalous...

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Главные авторы: Yerin K. V., Ерин, К. В., Belykh, S. S., Белых, С. С.
格式: Статья
语言:English
出版: Pleiades journals 2022
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在线阅读:https://dspace.ncfu.ru/handle/20.500.12258/21848
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spelling ir-20.500.12258-218482022-11-11T12:37:34Z Light Diffraction and Attenuation in Magnetic Emulsions with Low Interfacial Tension Yerin K. V. Ерин, К. В. Belykh, S. S. Белых, С. С. Deformation of microdroplets Diffraction Light attenuation Magnetic emulsions Diffraction patterns The work is devoted to studying the phenomena of light diffraction and attenuation in magnetic emulsions with low interfacial tension based on AMG-10 hydraulic oil under the action of magnetic and hydrodynamic fields. An interpretation of the phenomena has been proposed on the basis of the anomalous diffraction approximation, which is known in the optics of disperse systems. Rotation of the diffraction pattern of a rotating emulsion has been analyzed taking into account the features of the rotational mobility of liquid microdroplets. Calculations performed in terms of this model have yielded a nonlinear dependence of the rotation angle of the diffraction pattern on the emulsion rotation rate, with this dependence being consistent with experimental data. 2022-11-11T12:36:49Z 2022-11-11T12:36:49Z 2022 Статья Erin, K.V., Belykh, S.S. Light Diffraction and Attenuation in Magnetic Emulsions with Low Interfacial Tension // Colloid Journal. - 2022. - Том 84. - Выпуск 3. - Стр.: 287 - 296. - DOI10.1134/S1061933X22030048 http://hdl.handle.net/20.500.12258/21848 en Colloid Journal application/pdf application/pdf Pleiades journals
institution СКФУ
collection Репозиторий
language English
topic Deformation of microdroplets
Diffraction
Light attenuation
Magnetic emulsions
Diffraction patterns
spellingShingle Deformation of microdroplets
Diffraction
Light attenuation
Magnetic emulsions
Diffraction patterns
Yerin K. V.
Ерин, К. В.
Belykh, S. S.
Белых, С. С.
Light Diffraction and Attenuation in Magnetic Emulsions with Low Interfacial Tension
description The work is devoted to studying the phenomena of light diffraction and attenuation in magnetic emulsions with low interfacial tension based on AMG-10 hydraulic oil under the action of magnetic and hydrodynamic fields. An interpretation of the phenomena has been proposed on the basis of the anomalous diffraction approximation, which is known in the optics of disperse systems. Rotation of the diffraction pattern of a rotating emulsion has been analyzed taking into account the features of the rotational mobility of liquid microdroplets. Calculations performed in terms of this model have yielded a nonlinear dependence of the rotation angle of the diffraction pattern on the emulsion rotation rate, with this dependence being consistent with experimental data.
format Статья
author Yerin K. V.
Ерин, К. В.
Belykh, S. S.
Белых, С. С.
author_facet Yerin K. V.
Ерин, К. В.
Belykh, S. S.
Белых, С. С.
author_sort Yerin K. V.
title Light Diffraction and Attenuation in Magnetic Emulsions with Low Interfacial Tension
title_short Light Diffraction and Attenuation in Magnetic Emulsions with Low Interfacial Tension
title_full Light Diffraction and Attenuation in Magnetic Emulsions with Low Interfacial Tension
title_fullStr Light Diffraction and Attenuation in Magnetic Emulsions with Low Interfacial Tension
title_full_unstemmed Light Diffraction and Attenuation in Magnetic Emulsions with Low Interfacial Tension
title_sort light diffraction and attenuation in magnetic emulsions with low interfacial tension
publisher Pleiades journals
publishDate 2022
url https://dspace.ncfu.ru/handle/20.500.12258/21848
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AT erinkv lightdiffractionandattenuationinmagneticemulsionswithlowinterfacialtension
AT belykhss lightdiffractionandattenuationinmagneticemulsionswithlowinterfacialtension
AT belyhss lightdiffractionandattenuationinmagneticemulsionswithlowinterfacialtension
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