FINITE ELEMENT ANALYSIS AND OPTIMUM DESIGN OF THE MAGNETIC TRANSMISSION

For one type of magnetic agitator,under the condition that the maximum torque was determined of the cylindrical magnetic transmission,which simulated on the two-dimensional magnetic torque model by finite element software ANSYS14. 0.And the key parameters were analyzed,such as the number of magnetic...

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Main Authors: YIN XinQuan, LI XinYong, YANG YunZi, ZHANG YaPing, BAI WanBen
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2015-01-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2015.01.024
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author YIN XinQuan
LI XinYong
YANG YunZi
ZHANG YaPing
BAI WanBen
author_facet YIN XinQuan
LI XinYong
YANG YunZi
ZHANG YaPing
BAI WanBen
author_sort YIN XinQuan
collection DOAJ
description For one type of magnetic agitator,under the condition that the maximum torque was determined of the cylindrical magnetic transmission,which simulated on the two-dimensional magnetic torque model by finite element software ANSYS14. 0.And the key parameters were analyzed,such as the number of magnetic poles,the thickness of the permanent magnet and the yoke,the air-gap and so on,which affect the torque transmission. The key parameters could be optimized according to the simulation results,and the optimal structure of the magnetic transmission could be gained,the accuracy and practicability of the above design method were verified further by practical test.
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spelling doaj.art-d8e756e5bdee40bdad05912c23be2fe72025-01-15T02:39:07ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692015-01-013717718130590915FINITE ELEMENT ANALYSIS AND OPTIMUM DESIGN OF THE MAGNETIC TRANSMISSIONYIN XinQuanLI XinYongYANG YunZiZHANG YaPingBAI WanBenFor one type of magnetic agitator,under the condition that the maximum torque was determined of the cylindrical magnetic transmission,which simulated on the two-dimensional magnetic torque model by finite element software ANSYS14. 0.And the key parameters were analyzed,such as the number of magnetic poles,the thickness of the permanent magnet and the yoke,the air-gap and so on,which affect the torque transmission. The key parameters could be optimized according to the simulation results,and the optimal structure of the magnetic transmission could be gained,the accuracy and practicability of the above design method were verified further by practical test.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2015.01.024Magnetic transmissionFinite elementMagnetic torqueOptimization designTest
spellingShingle YIN XinQuan
LI XinYong
YANG YunZi
ZHANG YaPing
BAI WanBen
FINITE ELEMENT ANALYSIS AND OPTIMUM DESIGN OF THE MAGNETIC TRANSMISSION
Jixie qiangdu
Magnetic transmission
Finite element
Magnetic torque
Optimization design
Test
title FINITE ELEMENT ANALYSIS AND OPTIMUM DESIGN OF THE MAGNETIC TRANSMISSION
title_full FINITE ELEMENT ANALYSIS AND OPTIMUM DESIGN OF THE MAGNETIC TRANSMISSION
title_fullStr FINITE ELEMENT ANALYSIS AND OPTIMUM DESIGN OF THE MAGNETIC TRANSMISSION
title_full_unstemmed FINITE ELEMENT ANALYSIS AND OPTIMUM DESIGN OF THE MAGNETIC TRANSMISSION
title_short FINITE ELEMENT ANALYSIS AND OPTIMUM DESIGN OF THE MAGNETIC TRANSMISSION
title_sort finite element analysis and optimum design of the magnetic transmission
topic Magnetic transmission
Finite element
Magnetic torque
Optimization design
Test
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2015.01.024
work_keys_str_mv AT yinxinquan finiteelementanalysisandoptimumdesignofthemagnetictransmission
AT lixinyong finiteelementanalysisandoptimumdesignofthemagnetictransmission
AT yangyunzi finiteelementanalysisandoptimumdesignofthemagnetictransmission
AT zhangyaping finiteelementanalysisandoptimumdesignofthemagnetictransmission
AT baiwanben finiteelementanalysisandoptimumdesignofthemagnetictransmission