HYDRODYNAMIC CALCULATION OF RADIAL BEARING IN ELECTROMAGNETIC FIELD CONSIDERING ITS DEPENDENCE ON VISCOSITY AND ELECTROCONDUCTIVITY ON TEMPERATURE

We considered movement of electroconducting greasing in a backlash of the radial bearing in the presence of electromagnetic field with the account of its dependence of viscosity and electroconductivity on temperature. We estimated influence of the parametres characterising magnetic induction and int...

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Main Authors: K.S. AKHVERDIEV, E.O. LAGUNOVA, M.A. MUKUTADZE
Format: Article
Language:Russian
Published: Don State Technical University 2009-09-01
Series:Advanced Engineering Research
Subjects:
Online Access:https://www.vestnik-donstu.ru/jour/article/view/1172
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spelling doaj-c744e553f9d446d0b80f79ab00d46f842021-10-02T17:08:00ZrusDon State Technical UniversityAdvanced Engineering Research2687-16532009-09-01935295361157HYDRODYNAMIC CALCULATION OF RADIAL BEARING IN ELECTROMAGNETIC FIELD CONSIDERING ITS DEPENDENCE ON VISCOSITY AND ELECTROCONDUCTIVITY ON TEMPERATUREK.S. AKHVERDIEV0E.O. LAGUNOVA1M.A. MUKUTADZE2Rostov state transport universityRostov state transport universityRostov state transport universityWe considered movement of electroconducting greasing in a backlash of the radial bearing in the presence of electromagnetic field with the account of its dependence of viscosity and electroconductivity on temperature. We estimated influence of the parametres characterising magnetic induction and intensity of electric field on the basic performance data.https://www.vestnik-donstu.ru/jour/article/view/1172радиальный подшипникэлектромагнитное поленесущая способность
collection DOAJ
language Russian
format Article
sources DOAJ
author K.S. AKHVERDIEV
E.O. LAGUNOVA
M.A. MUKUTADZE
spellingShingle K.S. AKHVERDIEV
E.O. LAGUNOVA
M.A. MUKUTADZE
HYDRODYNAMIC CALCULATION OF RADIAL BEARING IN ELECTROMAGNETIC FIELD CONSIDERING ITS DEPENDENCE ON VISCOSITY AND ELECTROCONDUCTIVITY ON TEMPERATURE
Advanced Engineering Research
радиальный подшипник
электромагнитное поле
несущая способность
author_facet K.S. AKHVERDIEV
E.O. LAGUNOVA
M.A. MUKUTADZE
author_sort K.S. AKHVERDIEV
title HYDRODYNAMIC CALCULATION OF RADIAL BEARING IN ELECTROMAGNETIC FIELD CONSIDERING ITS DEPENDENCE ON VISCOSITY AND ELECTROCONDUCTIVITY ON TEMPERATURE
title_short HYDRODYNAMIC CALCULATION OF RADIAL BEARING IN ELECTROMAGNETIC FIELD CONSIDERING ITS DEPENDENCE ON VISCOSITY AND ELECTROCONDUCTIVITY ON TEMPERATURE
title_full HYDRODYNAMIC CALCULATION OF RADIAL BEARING IN ELECTROMAGNETIC FIELD CONSIDERING ITS DEPENDENCE ON VISCOSITY AND ELECTROCONDUCTIVITY ON TEMPERATURE
title_fullStr HYDRODYNAMIC CALCULATION OF RADIAL BEARING IN ELECTROMAGNETIC FIELD CONSIDERING ITS DEPENDENCE ON VISCOSITY AND ELECTROCONDUCTIVITY ON TEMPERATURE
title_full_unstemmed HYDRODYNAMIC CALCULATION OF RADIAL BEARING IN ELECTROMAGNETIC FIELD CONSIDERING ITS DEPENDENCE ON VISCOSITY AND ELECTROCONDUCTIVITY ON TEMPERATURE
title_sort hydrodynamic calculation of radial bearing in electromagnetic field considering its dependence on viscosity and electroconductivity on temperature
publisher Don State Technical University
series Advanced Engineering Research
issn 2687-1653
publishDate 2009-09-01
description We considered movement of electroconducting greasing in a backlash of the radial bearing in the presence of electromagnetic field with the account of its dependence of viscosity and electroconductivity on temperature. We estimated influence of the parametres characterising magnetic induction and intensity of electric field on the basic performance data.
topic радиальный подшипник
электромагнитное поле
несущая способность
url https://www.vestnik-donstu.ru/jour/article/view/1172
work_keys_str_mv AT ksakhverdiev hydrodynamiccalculationofradialbearinginelectromagneticfieldconsideringitsdependenceonviscosityandelectroconductivityontemperature
AT eolagunova hydrodynamiccalculationofradialbearinginelectromagneticfieldconsideringitsdependenceonviscosityandelectroconductivityontemperature
AT mamukutadze hydrodynamiccalculationofradialbearinginelectromagneticfieldconsideringitsdependenceonviscosityandelectroconductivityontemperature
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