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Metoda jakościowej impregnacji uzwojeń silników elektrycznych
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Abstrakty
The reliability of electric motors depends on the insulation of the windings, which is determined by the quality of the materials used and the correct impregnation of the windings. Impregnation of the stator winding is an important technological process to increase the quality and longevity of electric motors. As a result of impregnation, air pores between windings and spaces in fiber insulation are filled with impregnating composition, which ensures reliable operation of the engine. There are various methods to ensure that pores and voids are well filled. The article provides general information about varnishes used for impregnating windings of electric motors according to their composition. The article shows the scheme of rotating the stator and absorbing it by moving it with the camera. The proposed method implementation mechanism is also given. As a result of the change in the direction of the force vectors affecting the absorbent constituent element with our proposed method, the pores between the coils and the spaces of fibrous insulation are better filled.
Niezawodność silników elektrycznych zależy od izolacji uzwojeń, o której decyduje jakość zastosowanych materiałów i prawidłowa impregnacja uzwojeń. Impregnacja uzwojenia stojana jest ważnym procesem technologicznym zwiększającym jakość i żywotność silników elektrycznych. W wyniku impregnacji pory powietrzne pomiędzy uzwojeniami oraz przestrzenie w izolacji włókien wypełniają się kompozycją impregnującą, co zapewnia niezawodną pracę silnika. Istnieją różne metody zapewnienia dobrego wypełnienia porów i pustych przestrzeni. W artykule przedstawiono ogólne informacje na temat lakierów stosowanych do impregnacji uzwojeń silników elektrycznych ze względu na ich skład. W artykule przedstawiono schemat obracania stojana i pochłaniania go poprzez przesuwanie go za pomocą kamery. Podano także proponowany mechanizm realizacji metody. W wyniku zmiany kierunku wektorów sił działających na element składowy chłonnego zaproponowaną przez nas metodą następuje lepsze wypełnienie porów pomiędzy zwojami i przestrzeniami izolacji włóknistej.
Wydawca
Czasopismo
Rocznik
Tom
Strony
238--240
Opis fizyczny
Bibliogr. 28 poz., rys.
Twórcy
autor
- Azerbaijan State Oil and Industry University
autor
- Azerbaijan State Oil and Industry University
autor
- Azerbaijan State Oil and Industry University
Bibliografia
- [1]. Yukhimchuk V.D., Technology of production of electrical machines: textbook, Kharkov, 2006-543 p.
- [2]. I.P.Kopylov, Design of electrical machines. Textbook for universities/ed., Moscow, 2011-767p.
- [3]. A.A.Usoltsev, Electric cars. Textbook, St. Petersburg, 2013-416p.
- [4]. Y. Zhang, S. McLoone, W. Cao, F. Qiu, C. Gerada, Power Loss and Thermal Analysis of a MW High-Speed Permanent Magnet Synchronous Machine. IEEE Trans. Energy Convers. 2017, 32.
- [5]. B. Silwal, P. Sergeant, Thermally Induced Mechanical Stress in the Stator Windings of Electrical Machines. Energies 2018, 11, 2113
- [6]. J.Nonneman, N.Clarie, S.Schlimpert, P.Sergeant, M.De Paepe, Advanced Lumped Parameter Model for Switched Reluctance Motors With High Performance Cooling. In Proceedings of the 16th International Heat Transfer Conference, Beijing, Chinga, 10–15 August 2018; pp. 1–9.
- [7]. Nijat Mammadov , Sona Rzayeva , Nigar Ganiyeva, “Analisys of synchronized asynchronous generator for a wind electric installation”, Przeglad Elektrotechniczny journal, 05/2023 Page no.37,doi- 10.15199/48.2023.05.07
- [8]. A.Reinap, F.J.Márquez-Fernández, R.Andersson, C.Hogmark, M.Alakula, A.Göransson, Heat transfer analysis of a traction machine with directly cooled laminated windings. In Proceedings of the 2014 4th International Electric Drives Production Conference EDPC, Nuremburg, Germany, 30 September–1 October 2014.
- [9]. C.Tighe, C.Gerada, S.Pickering, Assessment of cooling methods for increased power density in electrical machines. In Proceedings of the 22nd International Conference on Electrical Machines ICEM, Lausanne, Switzerland, 4–7 September 2016; pp. 2626–2632.
- [10] . Nijat Mammadov. "Methods for analyzing the oscillatory process of a synchronous machine", The 12th International scientific and practical conference “Modern thoughts on the development of science: ideas, technologies and theories” (March 26–29, 2024) Amsterdam, Netherlands. International Science Group. 2024. 336 p. 2024.
- [11]. P.M.Lindh, I.Petrov., R.S.Semken, M. Niemela, J.J. Pyrhonen, L. Aarniovuori, T. Vaimann, A. Kallaste, Direct liquid cooling in lowpower electrical machines: Proof-of-concept. IEEE Trans. Energy Convers. 2016, 31, 1257–1266.
- [12]. I.M. Marufov, N.S. Mammadov, K.M. Mukhtarova, N.A. Ganiyeva, G.A. Aliyeva. “Calculation of main parameters of induction levitation device used in vertical axis wind generators”, IJTPE, Issue 54, Volume 15, Number 1, Pages 184-189, March 2023
- [13]. A.I. Abdulkadyrov, S.C. Osmanov, N.A. Aliyev, G.A. Aliyeva, “Features of Calculating the Parameters of Special Electric Machines”, News of Azerbaijan Higher Technical Schools, No. 5, Issue 87, pp. 55-61, Baku, Azerbaijan, 2013.
- [14]. S.Nategh, A.Krings, O.Wallmark, et al.: ‘Evaluation of impregnation materials for thermal management of liquid-cooled electric machines’, IEEE Trans. Ind. Electron., 2014, 61, (11), pp. 5956 – 5965
- [15] . A. Boglietti, A. Cavagnino, D.A. Staton, ‘Thermal sensitivity analysis for TEFC induction motors’. Second Int. Conf. on Power Electronics, Machines and Drives (PEMD 2004), London, UK, 2004, vol. 1, p. pp. 160 –165
- [16] . R. Wrobel, S. Ayat, J.L. Baker, ‘Analytical methods for estimating equivalent thermal conductivity in impregnated electrical windings formed using Litz wire’. 2017 IEEE Int. Electric Machines and Drives Conf. (IEMDC), Miami, USA, 2017, pp. 1 –8
- [17]. Mammadov Nijat Sabahaddin, “Application of Excitation System of Synchronous Generator for Wind Turbines”, The 4th International scientific and practical conference “Actual problems of modern science” (January 31–February 3, 2023) Boston, USA, International Science Group, 492 p
- [18]. Mammadov N.S., Aliyeva G.A. “Energy efficiency improving of a wind electric installation using a thyristor switching system for the stator winding of a two-speed asynchronous generator”, IJTPE, 2023 - Issue 55 - Volume 55 - Number 2 - pp. 285-290
- [19]. M. Schiefer and M. Doppelbauer, "Indirect slot cooling for highpower-density machines with concentrated winding," in IEMDC'2015, 2015, pp. 1820-1825.
- [20]. W. D. Callister and D. G. Rethwisch, Materials science and engineering vol. 5: John Wiley & Sons NY, 2011.
- [21]. G. C. Stone, I. Culbert, E. A. Boulter, and H. Dhirani, Electrical Insulation for Rotating Machines: Design, Evaluation, Aging, Testing, and Repair: Wiley, 2014.
- [22]. C. Sciascera, P. Giangrande, L. Papini, C. Gerada, and M. Galea, "Analytical Thermal Model for Fast Stator Winding Temperature Prediction," IEEE Transactions on Industrial Electronics, vol. 64, pp. 6116-6126, 2017
- [23]. C. Micallef, S.J. Pickering, K.A., Simmons, K.J. Bradley, An alternative cooling arrangement for the end region of a totally enclosed fan cooled (TEFC) induction motor. In Proceedings of the 4th IET Conference on Power Electronics, Machines and Drives PEMD, York, UK, 2–4 April 2008; pp. 305–309.
- [24]. N.M Piriyeva, “Asynchronous electric motor with efficient cooling system”. Power engineering problems No. 4, Baku, 2020. Pp. 34-40
- [25]. J. Pyrhonen, T. Jokinen, and V. Hrabovcova, Design of rotating electrical machines: John Wiley & Sons, 2009
- [26]. L. Mingda, L. Yingjie, D. Hao, and B. Sarlioglu, "Thermal management and cooling of windings in electrical machines for electric vehicle and traction application," in 2017 IEEE Transp. Electrification Conference and Expo (ITEC), 2017, pp. 668-673
- [27]. R. Camilleri, D. A. Howey, and M. D. McCulloch, "Predicting the Temperature and Flow Distribution in a Direct Oil-Cooled Electrical Machine With Segmented Stator," IEEE Transactions on Industrial Electronics, vol. 63, pp. 82-91, 2016.
- [28]. C.Rhebergen, B.Bilgin, A.Emadi, E.Rowan, J.Lo, Enhancement of electric motor thermal management through axial cooling methods: A materials approach. In Proceedings of the IEEE Energy Conversion Congress and Exposition (ECCE), Montreal, QC, Canada, 20–24 September 2015; pp. 5682–5688.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki i promocja sportu (2025).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d432791e-45ea-4e51-b997-94fe7cbd589a
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