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Design and simulation of disk stepper motor with permanent magnets

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this paper the design and the magneto-static simulation of axial-flux permanent- magnet stepper motor with the disc type rotor is presented. Disk motors are particularly suitable for electrical vehicles, robots, valve control, pumps, centrifuges, fans, machine tools and manufacturing. The brushless machine with axial flux and permanent magnets, also called the disc-type machine, is an interesting alternative to its cylindrical radial flux counterpart due to the disk shape, compact construction and high torque density. This paper describes a design of four phase microstepping motor with the disc type rotor. The FEM modeling and the 3D magneto-static simulation of the disk stepper motor with permanent magnets is being subject of the article, too. Disc rotor type permanent magnet stepper motor for high torque to inertia ratio is ideal for robotics and CNC machines.
Rocznik
Strony
281--288
Opis fizyczny
Bibliogr. 12 poz., rys., tab., wz.
Twórcy
autor
  • Department of Electrical Engineering and Mechatronics Faculty of Electrical Engineering and Informatics, Technical University of Košice Letn< 9, 042-00 Košice, Slovak Republic, jan.kanuch@tuke.sk
autor
  • Department of Electrical Engineering and Mechatronics Faculty of Electrical Engineering and Informatics, Technical University of Košice Letn< 9, 042-00 Košice, Slovak Republic, zelmira.ferkova@tuke.sk
Bibliografia
  • [1] Available on: http:// www.portescap.com
  • [2] Aydin M., Huang S., Lipo T.A., Axial flux permanent magnet disc machines: a review. University of Wisconsin, Madison (2004).
  • [3] Gieras J.F., Wang R.J., Kamper M.J., Axial Flux Permanent Magnet Brushless Machines. Kluwer Academic Publisher (2008).
  • [4] Hrabovcová V., Janoušek L., Rafajdus P., Ličko M., Moderné elektrické stroje. University of Žilina press, Slovakia (2001) (in Slovak).
  • [5] Hrabovcová V., Rafajdus P., Franko M., Measuring and modeling of the electrical machines. University of Žilina press, Slovakia (2004).
  • [6] Kaňuch J., Krokový motor s diskovým rotorom s axiálnym magnetickým tokom s krokom α<1°. Technical University of Kosice TUKE (2003).
  • [7] Parviainen A., Design of axial-flux permanent magnet low-speed machines and performance comparisonbetween radial-flux and axial-flux machines. Lappeenrannan teknillinen yliopisto Digipaino (2005).
  • [8] Rahim N.A., Hew W.P., Mahmoudi A., Axial-Flux Permanent-Magnet Brushless DC TractionMotor for Direct Drive of Electric Vehicle. IREE 6(2), (2011).
  • [9] Wiak S., Disc Type Motors for Light Electrical Vehicles. ACEMP’2001, Turkey, pp. 447-452 (2001).
  • [10] Wiak S., Nadolski R., Ludwinek K., Gawęcki Z., DC Permanent Magnet Motor for Electric Bikeand Their Impulse System for Battery Chargin. Proceedings XVI International Conference on Electrical Machines ICEM, 3-6 September 2004, Cracow, Poland, pp. 1057-1058 (2004).
  • [11] Wiak S., Welfle H., Electromagnetic Field Analysis of 3D Structure of Disk-Type Motors. Electromotion 3: 336-337 (1999).
  • [12] Wiak S., Welfle H., Komęza K., Dems M., Comparative study of 3D structure of disk type motor. Proceedings COMPUMAG’99, Sapporo - Japan, 25-28 October (1999).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-021f6c6a-6b93-46b1-9f90-73f431bf9bb3
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