165
Views
4
CrossRef citations to date
0
Altmetric
Articles

An analytical design method of thin, isotropic press-fit retention sleeve for surface-mounted permanent magnet drives

Pages 1-19 | Received 20 Dec 2017, Accepted 22 May 2018, Published online: 10 Oct 2018

References

  • Atkinson, G., Mecrow, B., Jack, A., Atkinson, D., Sangha, P., Benarous, M. (2006). The analysis of losses in high-power foult-tolerant machines for aerospace applications. IEEE Transaction on Industrial Application 42(5):1162–1170.
  • Bailey, C., Saban, D., Guedes-Pinto, P. (2009). Design of high-speed direct-connected permanent-magnet motors and generators for the petrochemical industry. IEEE Transaction on Industry Application 45(3):1159–1165.
  • Banichuk, N., Ivanova, S., Makeev, E. (2010). Finding of rigid punch shape and optimal contact pressure distribution. Mechanics Based Design of Structures and Machines 38(4):417–429.
  • Bartolo, J. B., Zhang, H., Gerada, D., Lillo, L. D., Gerada, C. (2013). High speed electrical generators, applications, materials and design. IEEE Workshop of Electrical Machines Design Control and Diagnosis (WEMDCD). Paris, France, 44–59.
  • Bianchi, N., Bolognani, S., Luise, F. (2003). Potential and limits of high speed PM motors. Proc. 38th IAS Annu. Meet. Conf. Rec. Ind. Appl. Conf.
  • Binder, A., Schneider, T., Klohr, M. (2006). Fixation of buried and surface-mounted magnets in high-speed permanent-magnet synchronous machines. IEEE Transaction on Industrial Application 42(4):1031–1037.
  • Binder, A. (2012). Elektrische Maschinen und Antriebe. Electrical Machines and Drives. Berlin Heidelberg: Springer
  • Chen, L., Zhu, C. (2014). Rotor strength analysis for high speed permanent magnet machines. Electrical Machines and Systems, International Conference on Hangzhou, China, 65–69.
  • Cho, H. W., Jang, S. M., Choi, S. K. (2006). A design approach to reduce rotor losses in high-speed permanent magnet machine for turbo-compressor. IEEE Transaction on Magnetics 42(10):3521–3523.
  • Chung, S., Moon, S., Kim, D., Kim, J. (2015). Development of a 20pole-24slot SPMSM with consequent pole rotor for in-wheel direct drive. IEEE Transaction on Industrial Electronics 63(1):302–309.
  • CirComp, Competence in Composites. CirComp GmbH. http://www.circomp.de/home.html (accessed Nov 27, 2017).
  • DIN 7190, (2001). Pressverbände. Interference fit assemblies. German industrial norm.
  • Eraslan, A., Orcan, Y. (2004). Thermoplastic response of a linearly hardening cylinder subjected to nonuniform heat source and convective boundary condition. Mechanics Based Design of Structures and Machines 32(2):133–164.
  • Ganev, E. (2007). High-performance electric drives aerospace more electric architectures - part I: Electric machines. Proceedings of IEEE Power Engineering Society. General Meeting Jun. 24–28. DOI: 10.1109/PES.2007.385463
  • Goraj, R. (2016). Prediction of the static unbalanced magnetic pull in synchronous surface mounted permanent magnet machines. Electrical Engineering 99(3):861–869.
  • Gross, D., Hauger, W., Schröder, J., W W. A. (2012). Technische Mechanik 3-Kinetik. Technical mechanics 3.-kinematics. Thechnical mechanics – Part 3 kinematics. Berlin: Springer.
  • Grote, K.-H., Feldhusen, J. (2014). Dubbel – Taschenbuch für den Maschinenbau. Dubbel - pocketbook for mechanical engineering. Berlin Heidelberg: Springer.
  • Guihong, F., Yanzhou, P., Bingyi, Z., Fuyu, Z. (2007 A contactless power generator system for automobiles. Mechatronics and Automation Int. Conf. on. Harbin, China, 3838–3843.
  • Kollmann, F. G. (1984). Welle-Nabe-Verbindungen, Gestaltung, Auslegung, Auswahl. Shaft-hub connections, configuration, design, selection. Berlin, Heidelberg, New York, Tokyo, Springer.
  • Kolondzovski, Z. (2010). Thermal and mechanical analyses of high-speed permanent-magnet electrical machines. PhD, Espoo, Finnland: Aalto University.
  • Li, S., Li, Y., Sarlioglu, B. (2015). Performance assessment of high-speed flux-switching permanent magnet machine using ferrite and rare earth permanent magnet materials. Electric Power Components and Systems 43(6):711–720.
  • Li, S., Li, Y., Choi, W., Sarlioglu, B. (2014). High-spped electrical machines – challenges and design consideration. Proceedings of International Conference on Electrical Machines (ICEM). Berlin, Germany, September, 2-5.
  • Liao, A., Zhang, H., Wu, C. (2007). A finite element model for 3D elastoplastic frictional contact analysis and its application in numerical simulation of turocharger compressor. Mechanics Based Design of Structures and Machines, 35(3):267–289.
  • Moghaddam, R. R. (2014). High speed operation of electrical machines, a review on technology, benefits and challenges. IEEE Energy Conversion Congress and Exposition. Pittsburg, PA, 5539–5546.
  • Rilla, M., Pyrhonen, J., Niemela, M., Pekola, J., Jappinen, J. (2008). Design of 60 kW, 9000 rpm non-salient pole PM machine. Proceedings of 18th International Conference on Electronic Machine.
  • Schubert, E., Li, S., Sarlioglu, B. (2016). High-speed surface permanent magnet machines - rotor design analysis, considerations, and challenges. Transportation Electrification Conference and Expo (ITEC). USA, MI, Dearborn
  • Smith, D., Mecrow, B., Atkinson, G., Jack, A., Mehna, A. (2010). Shear stress concentration in permanent magnet rotor sleeves Proceedings of XIX International Conference on. Electronics Machine.
  • Thomas, D., Zhu, Z. Q., Jewell, G. W. (2009). Proximity loss study in high speed flux-switching permanent magnet machine. IEEE Transactions on. Magnetics 45(10):4748–4751.
  • Upadhyay, P., Mohan, N. (2009). Design and FE analysis of surface mounted permanent magnet motor/generator for high-speed modular flywheel energy storage system. IEEE Energy Conversion Congr. and Expo. San Jose, CA, 3630–3633.
  • Van der Geest, M., Polinder, H., Ferreira, J. A., Zeilstra, D. (2015). Design and testing of a high-speed aerospace permanent magnet starter/generator. Electrical System for Aircraft, Railway, Ship Propulsion and Road Vehicles, Int. Conf. on. Aachen, Germany, 1–6.
  • Wang, J., Wang, F., Kong, X. (2008). Losses and thermal analysis of high speed PM machine. Power System Technology and Power India Conf., joint Int. Conf. on. New Delhi, India.
  • Wang, T., Wang, F., Bai, H., Xing, J. (2007). Optimisation design of rotor structure for high speed permanent magnet machines. Electrical Machines and Systems, Int. Conf. on. Seoul, Korea, 1438–1442.
  • Wittel, H., Muhs, D., Jannasch, D., Vosziek, J. (2013). Roloff/Matek Maschinenelemente. Roloff/Matek machine elements. Wiesbaden: Springer Vieweg.
  • Yan, S., Eiber, A., Schiehlen, W. (2005). Interaction between electrical and mechanical components in hand-held electrical tools. Mechanics Based Design of Structures and Machines 33(3–4):271–292.
  • Yon, J. M., Mellor, P. H., Wrobel, R., Booker, J. D., Burrow, S. G. (2012). Analysis of semipermeable containment sleeve technology for high-speed permanent magnet machines. IEEE Transaction on Energy Conversion 27(3):646–653.
  • Zeidler, E. (2013. Taschenbuch der Mathematik, Pocketbook of Mathematics. Wiesbaden: Springer.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.