Zitieren

1. EU institutions. (2009). Environment – European Commission.Search in Google Scholar

2. Harris, A. (2006).ORGALIME guide to the scope of the WEEE and RoHS directives. Bruxelles.Search in Google Scholar

3. International Energy Agency. (2016). World Energy Outlook 2016. Available at https://www.iea.org/newsroom/news/2016/november/world-energy-outlook-2016.htmlSearch in Google Scholar

4. Waide, P., & Brunner, C. U. (2011). Energy-efficiency policy opportunities for electric motor-driven systems. Energy Efficiency Series.Search in Google Scholar

5. IEC 60034-30-1:2014. (2014). Rotating electrical machines – Part 30-1: Efficiency classes of line operated AC motors (IE code).Search in Google Scholar

6. Rassõlkin, A., Orlova, S., Vaimann, T., Belahcen, A., & Kallaste, A. (2016). Environmental and life cycle cost analysis of a synchronous reluctance machine. In 57th International Scientific Conference on Power and Electrical Engineering of Riga Technical University (RTUCON) (pp. 1–5) 13 – 14 October 2016, Riga.10.1109/RTUCON.2016.7763127Search in Google Scholar

7. Orlova, S., Rassõlkin, A., Kallaste, A., Vaimann, T., & Belahcen, A. (2016). Lifecycle analysis of different motors from the standpoint of environmental impact. Latv. J. Phys. Tech. Sci., 53(6), 37–46.10.1515/lpts-2016-0042Search in Google Scholar

8. Mahajan, S. (2001). Encyclopedia of materials: Science and technology. Elsevier.Search in Google Scholar

9. Shokrollahi, H., & Janghorban, K. (2007). Soft magnetic composite materials (SMCs). J. Mater. Process. Technol., 189(1), 1–12.10.1016/j.jmatprotec.2007.02.034Search in Google Scholar

10. Alatalo, M., Lundmark, S. T., & Grunditz, E. A. (2011). Electric machine design for traction applications considering recycling aspects-review and new solution. In IECON 2011 – 37th Annual Conference of the IEEE Industrial Electronics Society (pp. 1836–1841), 7–10 November 2011, Melbourne, Australia.10.1109/IECON.2011.6119585Search in Google Scholar

11. Pellegrino, G., Jahns, T. M., Bianchi, N., Soong, W., & Cupertino, F. (2016). The rediscovery of synchronous reluctance and ferrite permanent magnet motors. Cham: Springer International Publishing.10.1007/978-3-319-32202-5Search in Google Scholar

12. Karlsson, B., & Järrhed, J.-O. (2000). Recycling of electrical motors by automatic disassembly. Meas. Sci. Technol., 11(4), 350–357.10.1088/0957-0233/11/4/303Search in Google Scholar

13. Lundmark, S. T., & Alatalo, M. (2013). A segmented claw-pole motor for traction applications considering recycling aspects. In 2013 Eighth International Conference and Exhibition on Ecological Vehicles and Renewable Energies (EVER) (pp. 1–6), 27–30 March 2013, Monaco.10.1109/EVER.2013.6521613Search in Google Scholar

14. Yuksel, T., & Baylakoglu, I. (2007). Recycling of electrical and electronic equipment, benchmarking of disassembly methods and cost analysis. In Proceedings of the 2007 IEEE International Symposium on Electronics and the Environment (pp. 222–226), 7–10 May 2007.10.1109/ISEE.2007.369398Search in Google Scholar

15. Binnemans, K., Jones, P. T., Blanpain, B., van Gerven, T., Yang, Y., Walton, & A., Buchert, M. (2013). Recycling of rare earths: A critical review. J. Clean. Prod., 51, 1–22.10.1016/j.jclepro.2012.12.037Search in Google Scholar

16. Elwert, T., Goldmann, D., Romer, F., Buchert, M., Merz, C., Schueler, D., & Sutter, J. (2015). Current developments and challenges in the recycling of key components of (hybrid) electric vehicles. Recycling, 1(1), 25–60.10.3390/recycling1010025Search in Google Scholar

17. Hogberg, S., Bendixen, F. B., Mijatovic, N., Jensen, B., & Holboll, J. (2015). Influence of demagnetization-temperature on magnetic performance of recycled Nd-Fe-B magnets. In 2015 IEEE International Electric Machines & Drives Conference (IEMDC) (pp. 1242–1246), 10–13 May 2015, USA.10.1109/IEMDC.2015.7409220Search in Google Scholar

18. SKF. (2013). Rolling bearings and seals in electric motors and generators – A handbook for the industrial designer and end-user. SKF Group.Search in Google Scholar

19. Tong, C., Wu, F., Zheng, P., Yu, B., Sui, Y., & Cheng, L. (2014). Investigation of magnetically isolated multiphase modular permanent-magnet synchronous machinery series for wheel-driving electric vehicles. IEEE Trans. Magn., 50(11), 1–4.10.1109/TMAG.2014.2319593Search in Google Scholar

20. Ouyang, W., Huang, S., Good, A., & Lipo, T. A. (2005). Modular permanent magnet machine based on soft magnetic composite. In 2005 International Conference on Electrical Machines and Systems (pp. 235–239), 27–29 September 2005.10.1109/ICEMS.2005.202519Search in Google Scholar

21. Hogberg, S., Pedersen, T. S., Bendixen, F. B., Mijatovic, N., Jensen, B. B., & Holboll, J. (2016). Direct reuse of rare earth permanent magnets – Wind turbine generator case study. In 2016 XXII International Conference on Electrical Machines (ICEM) (pp. 1625–1629), 4–7 September 2016,Lausanne, Switzerland.10.1109/ICELMACH.2016.7732741Search in Google Scholar

22. Steentjes, S., Leuning, N., Dierdorf, J., Wei, X., Hirt, G., Weiss, H. A. …Hameyer, K. (2016).Effect of the interdependence of cold rolling strategies and subsequent punching on magnetic properties of NO steel sheets. IEEE Trans. Magn., 52(5), 1–4.10.1109/TMAG.2016.2516340Search in Google Scholar

23. Boughanmi, W., Manata, J. P., Roger, D., Jacq, T., & Streiff, F. (2012). Life cycle assessment of a three-phase electrical machine in continuous operation. IET Electr. Power Appl., 6(5), p. 277.10.1049/iet-epa.2011.0219Search in Google Scholar

eISSN:
0868-8257
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
6 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Physik, Technische und angewandte Physik