Development of a new flux switching transverse flux machine with the ability of linear motion

This paper proposes a new rotary flux switching transverse flux machine with the ability of linear motion (FSTFMaLM), in which both the stator and the rotor cores are made by using soft magnetic composite (SMC) materials. With the special design pattern, for the rotary motion model, the proposed mac...

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Main Authors: Chengcheng Liu, Shaopeng Wang, Youhua Wang, Gang Lei, Youguang Guo, Jianguo Zhu
Format: Article
Language:English
Published: China Electrotechnical Society 2018-12-01
Series:CES Transactions on Electrical Machines and Systems
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8598257
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author Chengcheng Liu
Shaopeng Wang
Youhua Wang
Gang Lei
Youguang Guo
Jianguo Zhu
author_facet Chengcheng Liu
Shaopeng Wang
Youhua Wang
Gang Lei
Youguang Guo
Jianguo Zhu
author_sort Chengcheng Liu
collection DOAJ
description This paper proposes a new rotary flux switching transverse flux machine with the ability of linear motion (FSTFMaLM), in which both the stator and the rotor cores are made by using soft magnetic composite (SMC) materials. With the special design pattern, for the rotary motion model, the proposed machine can combine both the advantages of the flux switching permanent magnet machine (FSPMM) and the transverse flux machine (TFM). It can output with relatively high torque density, and as there is no windings or the magnets on the rotor cores, the proposed machine can operate in the high speed region to improve the output power. With the adoption of the SMC materials, the manufacturing of this machine can be quite easy. By stacking the rotor core together and prolong it with the determined length in the axial direction, in addition with the special control algorithm, the proposed machine can have the ability of the linear motion. In this paper, the operation principle of this machine has been explained and the design methods are also presented. To seek the better performance, the main dimension of the machine is optimized, and for the performance evaluation, the finite element method (FEM) is adopted. The proposed machine can be used for the electric driving systems, robotic systems or other applications where the linear motion ability is required.
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spelling doaj.art-6cf005565e0d4039a12c7070e20ce5d72023-08-01T07:07:41ZengChina Electrotechnical SocietyCES Transactions on Electrical Machines and Systems2096-35642837-03252018-12-012438439110.30941/CESTEMS.2018.00049Development of a new flux switching transverse flux machine with the ability of linear motionChengcheng Liu0Shaopeng Wang1Youhua Wang2Gang Lei3Youguang Guo4Jianguo Zhu5Hebei University of Technology, Tianjin, Tianjin, CNHebei University of Technology, Tianjin, Tianjin, CNHebei University of Technology, Tianjin, Tianjin, CNUniversity of Technology Sydney, Sydney, NSW, AUUniversity of Technology Sydney, Sydney, NSW, AUSchool of electrical and information engineering, University of Sydeny, NSW 2007, AustraliaThis paper proposes a new rotary flux switching transverse flux machine with the ability of linear motion (FSTFMaLM), in which both the stator and the rotor cores are made by using soft magnetic composite (SMC) materials. With the special design pattern, for the rotary motion model, the proposed machine can combine both the advantages of the flux switching permanent magnet machine (FSPMM) and the transverse flux machine (TFM). It can output with relatively high torque density, and as there is no windings or the magnets on the rotor cores, the proposed machine can operate in the high speed region to improve the output power. With the adoption of the SMC materials, the manufacturing of this machine can be quite easy. By stacking the rotor core together and prolong it with the determined length in the axial direction, in addition with the special control algorithm, the proposed machine can have the ability of the linear motion. In this paper, the operation principle of this machine has been explained and the design methods are also presented. To seek the better performance, the main dimension of the machine is optimized, and for the performance evaluation, the finite element method (FEM) is adopted. The proposed machine can be used for the electric driving systems, robotic systems or other applications where the linear motion ability is required.https://ieeexplore.ieee.org/document/8598257flux switchinglinear motionhigh torque densitysoft magnetic composite (smc)transverse flux machine
spellingShingle Chengcheng Liu
Shaopeng Wang
Youhua Wang
Gang Lei
Youguang Guo
Jianguo Zhu
Development of a new flux switching transverse flux machine with the ability of linear motion
CES Transactions on Electrical Machines and Systems
flux switching
linear motion
high torque density
soft magnetic composite (smc)
transverse flux machine
title Development of a new flux switching transverse flux machine with the ability of linear motion
title_full Development of a new flux switching transverse flux machine with the ability of linear motion
title_fullStr Development of a new flux switching transverse flux machine with the ability of linear motion
title_full_unstemmed Development of a new flux switching transverse flux machine with the ability of linear motion
title_short Development of a new flux switching transverse flux machine with the ability of linear motion
title_sort development of a new flux switching transverse flux machine with the ability of linear motion
topic flux switching
linear motion
high torque density
soft magnetic composite (smc)
transverse flux machine
url https://ieeexplore.ieee.org/document/8598257
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AT ganglei developmentofanewfluxswitchingtransversefluxmachinewiththeabilityoflinearmotion
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