Numerical model of the axial magnetic bearing with six cylindrical poles

The paper presents a numerical model of the novel design of the axial magnetic bearing with six cylindrical poles. The motivation behind this idea was to eliminate vibrations in rotating machinery due to the axial load. Common conception of such a bearing provides a single component of the electroma...

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Main Authors: Bartłomiej Marian Sikora, Adam Krzysztof Pilat
Format: Article
Language:English
Published: Polish Academy of Sciences 2019-02-01
Series:Archives of Electrical Engineering
Subjects:
Online Access:https://journals.pan.pl/Content/109924/PDF/AEE-68-1-2019_art_15.pdf
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author Bartłomiej Marian Sikora
Adam Krzysztof Pilat
author_facet Bartłomiej Marian Sikora
Adam Krzysztof Pilat
author_sort Bartłomiej Marian Sikora
collection DOAJ
description The paper presents a numerical model of the novel design of the axial magnetic bearing with six cylindrical poles. The motivation behind this idea was to eliminate vibrations in rotating machinery due to the axial load. Common conception of such a bearing provides a single component of the electromagnetic force, which is not enough to reduce transverse and lateral vibrations of the armature. The proposed design allows for avoiding wobbling of the disc with the use of a few axial force components that are able to actively compensate the axial load and stabilise the disc in a balanced position. Before a real device is manufactured, a virtual prototype should be prepared. The accurate numerical model will provide essential knowledge about the performance of the axial magnetic bearing.
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spelling doaj.art-7e77f175e5ca4fd59838fe92db3809c52022-12-22T01:39:48ZengPolish Academy of SciencesArchives of Electrical Engineering2300-25062019-02-01vol. 68No 1195208https://doi.org/10.24425/aee.2019.125990Numerical model of the axial magnetic bearing with six cylindrical polesBartłomiej Marian SikoraAdam Krzysztof PilatThe paper presents a numerical model of the novel design of the axial magnetic bearing with six cylindrical poles. The motivation behind this idea was to eliminate vibrations in rotating machinery due to the axial load. Common conception of such a bearing provides a single component of the electromagnetic force, which is not enough to reduce transverse and lateral vibrations of the armature. The proposed design allows for avoiding wobbling of the disc with the use of a few axial force components that are able to actively compensate the axial load and stabilise the disc in a balanced position. Before a real device is manufactured, a virtual prototype should be prepared. The accurate numerical model will provide essential knowledge about the performance of the axial magnetic bearing.https://journals.pan.pl/Content/109924/PDF/AEE-68-1-2019_art_15.pdfactive magnetic bearingaxial magnetic bearingfinite element methodnumerical modelcomsol multiphysics
spellingShingle Bartłomiej Marian Sikora
Adam Krzysztof Pilat
Numerical model of the axial magnetic bearing with six cylindrical poles
Archives of Electrical Engineering
active magnetic bearing
axial magnetic bearing
finite element method
numerical model
comsol multiphysics
title Numerical model of the axial magnetic bearing with six cylindrical poles
title_full Numerical model of the axial magnetic bearing with six cylindrical poles
title_fullStr Numerical model of the axial magnetic bearing with six cylindrical poles
title_full_unstemmed Numerical model of the axial magnetic bearing with six cylindrical poles
title_short Numerical model of the axial magnetic bearing with six cylindrical poles
title_sort numerical model of the axial magnetic bearing with six cylindrical poles
topic active magnetic bearing
axial magnetic bearing
finite element method
numerical model
comsol multiphysics
url https://journals.pan.pl/Content/109924/PDF/AEE-68-1-2019_art_15.pdf
work_keys_str_mv AT bartłomiejmariansikora numericalmodeloftheaxialmagneticbearingwithsixcylindricalpoles
AT adamkrzysztofpilat numericalmodeloftheaxialmagneticbearingwithsixcylindricalpoles