Evaluation of frame-induced compressive stress on the magnetic properties of stator cores using the excitation inner core method
Author:
Affiliation:
1. National Institute of Technology , Oita College , 1666 Maki, Oita-city, Oita , 870-0152 , Japan
2. Vector Magnetic Characteristic Technical Laboratory , 533 Joi Usa-city, Oita , 879-0442 , Japan
Abstract
Publisher
Walter de Gruyter GmbH
Link
https://www.sciendo.com/pdf/10.2478/jee-2018-0080
Reference9 articles.
1. [1] N. Takahashi and D. Miyagi, “Effect of stress on iron loss of motor core”, IEMDC, 2011 IEEE International, pp. 469-474, (2011).
2. [2] A. J. Moses and H. Rahmatizadeh, “Effect of Stress on Iron Loss an Flux Distribution of an Induction Motor Stator Core”, IEEE Trans. on Magnetics, vol. 25, no. 5, pp. 4003-4005, (1989).
3. [3] A. J. Moses, and H. Rahmatizadeh, “Economic aspects of minimising the effects of mechanical stress induction motor stator core”, Journal of Magnetism and Magnetic Matrials, vol. 112, pp. 435-438, (1992).
4. [4] A. Schoppa, J. Schneider and C. -D. Wuppermann, “Influence of the manufacturing process on the magnetic properties of non-oriented electrical steel”, Journal of Magnetism and Magnetic Materials, vol. 215-216, pp. 215-216, (2000).
5. [5] A. Krings, M. Cossale, J. Soulard and A. Boglietti, “Manufacturing influence on the magnetic properties and iron losses cobalt-iron stator cores for electrical machines”, 2014 IEEE Energy Conversion Congress and Expositions, pp. 5595-5901, 2014.
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