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Temperature distribution in multi domain construction of the permanent magnet linear actuator

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The transient thermal model of the permanent magnet linear actuator (PMLA) has been considered. The characteristics of heating have been calculated including the main subdomains of the actuator. The carcasses from various materials have also been considered. The calculations have been verified experimentally and a good conformity was obtained.
Rocznik
Strony
417--424
Opis fizyczny
Bibliogr. 14 poz., rys., tab.
Twórcy
autor
  • Department of Industrial Electrical Engineering, Opole University of Technology ul. Prószkowska 76, 45-758 Opole, Poland
autor
  • Department of Industrial Electrical Engineering, Opole University of Technology ul. Prószkowska 76, 45-758 Opole, Poland
Bibliografia
  • [1] Chayopitak N., Taylor D.G., Thermal analysis of a linear permanent-magnet motor with concentratedwindings. ICEM, Ghania, Crete Island, Greece, September 2-5, 559 (2006).
  • [2] Cho S.-M., Choi H.-Y., Jung S.-Y., Jung H.-K., Thermal characteristics and experimental validationin steel-cored PMLSM considering running condition. ICEM, Cracow, Poland, September 5-8, paper 726 (2004).
  • [3] Faiz J., Ganji B., Carstensen Ch.E., Kasper K.A., De Doncker R.W., Temperature rise analysis ofswitched reluctance motors due to electromagnetic losses. IEEE Trans. on Magnetics 45(7): 2927-2934 (2009).
  • [4] Gieras J.F., Piech Z.J., Tomczuk B., Linear synchronous motors. CRC Press, Taylor & Francis Group, USA (2011).
  • [5] Lide D.R., Handbook of chemistry and physics. 84th Edition, CRC Press LLC, USA (2004).
  • [6] Lienhard IV J.H., Lienhard V J.H., A heat transfer textbook. Phlogiston Press, Cambridge, Massachusetts, USA (2002).
  • [7] Marignetti F., Colli V.D., Thermal analysis of an axial flux permanent-magnet synchronous machine, IEEE Trans. on Magnetics 45(7): 2970-2975 (2009).
  • [8] Nowak L., Mikołajewicz J., Pietrowski W., Field-circuit model of the thermal phenomena in axialsymmetryelectromagnetic devices. Electrical Review 85(6): 63-66 (2009).
  • [9] Tomczuk B., Karolczuk A., Waindok A., Wajnert D., Fatigue tests of materials with the electromagneticactuator application. The 6th International Conference Mechatronic Systems And Materials (MSM 2010), Opole, Poland, 5-8 July, pp. 203-204 (2010).
  • [10] Demenko A., Lyskawinski W., Wojciechowski R.M., Equivalent formulas for global magnetic forcecalculation from finite element solution. IEEE Trans. on Magnetics 48(2): 195-198 (2012).
  • [11] Waindok A., Analysis of permanent magnet linear motor parameters taking its heating into account. Archives of Electrical Engineering 61(4): 471-482 (2012).
  • [12] Waindok A., Włodarczyk A., A Simplified Thermal-Magnetic Model of a Coil with Electric Current. IInd International Students Conference on Electrodynamic and Mechatronics, Gora sw. Anny, Poland, 19-21 May, pp. 19-20 (2009).
  • [13] OPERA 3-D, User guide, Vector Fields Limited, Oxford (2008).
  • [14] www.mmcmagnetics.com accessed December 2012.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-dd86727b-8bc3-4652-8e75-f914f2b98983
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