DocumentCode :
3128108
Title :
Development of a novel axial-flux claw pole machine with soft magnetic composite core
Author :
Liu, C. ; Zhu, J. ; Wang, Y. ; Lei, G. ; Guo, Y. ; Liu, X.
Author_Institution :
Province-Minist. Joint Key Lab. of EFEAR, Hebei Univ. of Technol., Tianjin, China
fYear :
2015
fDate :
11-15 May 2015
Firstpage :
1
Lastpage :
1
Abstract :
By using the powder metallurgy technology and magnetic isotropy characteristic of the soft magnetic composite (SMC) material, various kinds of the complex structure permanent magnet synchronous machines (PMSMs) can be designed and fabricated easily e.g., axial-flux machine, claw pole machine (CPM) and transverse-flux machine (TFM). With the global coil applied in the CPM and TFM, the CPM and TFM has higher torque density than other PMSMs. As a special PMSM, the axial flux PMSMS can provide the relatively high power density and excellent efficiency as well. In this paper, a novel axial-flux claw pole machine (AFCPM) with SMC core is developed, which combines the merits of the axial flux machine and CPM. To show the advantages of AFCPM, there is a performance comparison between this motor and the outer rotor TFM. It can be found that the AFCPM with NdFeB excitation has higher torque ability and lower cogging torque than that of outer rotor TFM, while the AFCPM with ferrite magnet is a good candidate for low cost application.
Keywords :
boron alloys; coils; composite materials; ferrite devices; ferrites; iron alloys; magnetic cores; magnetic flux; neodymium alloys; permanent magnet motors; rotors; soft magnetic materials; synchronous motors; torque; NdFeB; axial-flux claw pole machine; cogging torque; coil; complex structure permanent magnet synchronous machines; ferrite magnet; magnetic isotropy characteristics; outer rotor transverse-flux machine; powder metallurgy; power density; soft magnetic composite core; soft magnetic composite material; torque density; transverse-flux machine; Ferrites; Magnetic cores; Magnetic flux; Permanent magnet motors; Rotors; Soft magnetic materials; Torque;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Magnetics Conference (INTERMAG), 2015 IEEE
Conference_Location :
Beijing
Print_ISBN :
978-1-4799-7321-7
Type :
conf
DOI :
10.1109/INTMAG.2015.7156882
Filename :
7156882
Link To Document :
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