Calculation of Air Gap Magnetic Field and Torque of Dual-modulation Axial Magnet Gear Motors

A dual-modulation axial magnet gear motor (DAMGM) was proposed to address the shortcomings of the axial magnet gear motor (AMGM), which has a large overall size and low torque density(≤70 kN·m/m<sup>3</sup>). Two magnetizing rings on the high-speed and low-speed sides were used to modula...

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Main Authors: Ge Yanjun, Ma Xueqi, Li Haitao, Long Wei, Yu Han
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2024-09-01
Series:Jixie chuandong
Subjects:
Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2024.09.008
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author Ge Yanjun
Ma Xueqi
Li Haitao
Long Wei
Yu Han
author_facet Ge Yanjun
Ma Xueqi
Li Haitao
Long Wei
Yu Han
author_sort Ge Yanjun
collection DOAJ
description A dual-modulation axial magnet gear motor (DAMGM) was proposed to address the shortcomings of the axial magnet gear motor (AMGM), which has a large overall size and low torque density(≤70 kN·m/m<sup>3</sup>). Two magnetizing rings on the high-speed and low-speed sides were used to modulate the low-speed rotor in the DAMGM, and the non-magnetic parts in both magnetic magnetizing rings were permanent magnets, effectively improving the output torque of the low-speed rotor. In addition, compared to the existing AMGM, the drive motor was placed inside the high-speed permanent magnet rotor of the DAMGM, reducing the overall axial size and significantly improving the torque density of the low-speed rotor(150 kN·m/m<sup>3</sup>). Aiming at the problems of long calculation time and serious waste of computer resources in the existing 3D finite element method, a 3D analysis method of DAMGM based on the cylindrical coordinate system was presented. According to three boundary conditions of the magnetizing ring, the mathematical and physical models of the modulated DAMGM air gap magnetic field and electromagnetic torque were established. The calculation results are not only accurate (compared with the 3D finite element method, the average calculation error is less than or equal to 5%), but also the calculation time is short (only 1/10 of the 3D finite element method), facilitating the analysis, comparison, and optimization of different parameter structures in the DAMGM.
format Article
id doaj-art-ecfaf3b0d0cc4d9fad7ed9026e12c886
institution Kabale University
issn 1004-2539
language zho
publishDate 2024-09-01
publisher Editorial Office of Journal of Mechanical Transmission
record_format Article
series Jixie chuandong
spelling doaj-art-ecfaf3b0d0cc4d9fad7ed9026e12c8862025-01-10T15:01:31ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392024-09-0148606772500201Calculation of Air Gap Magnetic Field and Torque of Dual-modulation Axial Magnet Gear MotorsGe YanjunMa XueqiLi HaitaoLong WeiYu HanA dual-modulation axial magnet gear motor (DAMGM) was proposed to address the shortcomings of the axial magnet gear motor (AMGM), which has a large overall size and low torque density(≤70 kN·m/m<sup>3</sup>). Two magnetizing rings on the high-speed and low-speed sides were used to modulate the low-speed rotor in the DAMGM, and the non-magnetic parts in both magnetic magnetizing rings were permanent magnets, effectively improving the output torque of the low-speed rotor. In addition, compared to the existing AMGM, the drive motor was placed inside the high-speed permanent magnet rotor of the DAMGM, reducing the overall axial size and significantly improving the torque density of the low-speed rotor(150 kN·m/m<sup>3</sup>). Aiming at the problems of long calculation time and serious waste of computer resources in the existing 3D finite element method, a 3D analysis method of DAMGM based on the cylindrical coordinate system was presented. According to three boundary conditions of the magnetizing ring, the mathematical and physical models of the modulated DAMGM air gap magnetic field and electromagnetic torque were established. The calculation results are not only accurate (compared with the 3D finite element method, the average calculation error is less than or equal to 5%), but also the calculation time is short (only 1/10 of the 3D finite element method), facilitating the analysis, comparison, and optimization of different parameter structures in the DAMGM.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2024.09.008Axial magnetic gear motorAir gap magnetic densityElectromagnetic torqueThree-dimensional analysis method
spellingShingle Ge Yanjun
Ma Xueqi
Li Haitao
Long Wei
Yu Han
Calculation of Air Gap Magnetic Field and Torque of Dual-modulation Axial Magnet Gear Motors
Jixie chuandong
Axial magnetic gear motor
Air gap magnetic density
Electromagnetic torque
Three-dimensional analysis method
title Calculation of Air Gap Magnetic Field and Torque of Dual-modulation Axial Magnet Gear Motors
title_full Calculation of Air Gap Magnetic Field and Torque of Dual-modulation Axial Magnet Gear Motors
title_fullStr Calculation of Air Gap Magnetic Field and Torque of Dual-modulation Axial Magnet Gear Motors
title_full_unstemmed Calculation of Air Gap Magnetic Field and Torque of Dual-modulation Axial Magnet Gear Motors
title_short Calculation of Air Gap Magnetic Field and Torque of Dual-modulation Axial Magnet Gear Motors
title_sort calculation of air gap magnetic field and torque of dual modulation axial magnet gear motors
topic Axial magnetic gear motor
Air gap magnetic density
Electromagnetic torque
Three-dimensional analysis method
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2024.09.008
work_keys_str_mv AT geyanjun calculationofairgapmagneticfieldandtorqueofdualmodulationaxialmagnetgearmotors
AT maxueqi calculationofairgapmagneticfieldandtorqueofdualmodulationaxialmagnetgearmotors
AT lihaitao calculationofairgapmagneticfieldandtorqueofdualmodulationaxialmagnetgearmotors
AT longwei calculationofairgapmagneticfieldandtorqueofdualmodulationaxialmagnetgearmotors
AT yuhan calculationofairgapmagneticfieldandtorqueofdualmodulationaxialmagnetgearmotors