A study on levitation performance improvement of bent flexible steel plate
Author:
KATO Hideaki1, OGAWA Kazuki2, TADA Makoto2, ODA Yoshiho2, LIU Xiaojun2, ENDO Ayato2, IKEDA Keigo2, NARITA Takayoshi1
Affiliation:
1. Department of Prime Mover Engineering, Tokai University 2. Course of Mechanical Engineering, Tokai University
Publisher
Japan Society of Mechanical Engineers
Reference7 articles.
1. Marumori, H., Yonezawa, H., Narita, T., Kato, H., Hasegawa, S. and Oshinoya, Y., Effective Plate Thickness Range in Bending Technique for Levitation Control of Flexible Steel Plate, Proc. Schl. Eng. Tokai Univ., Vol. 39, Ser. E (2014), pp. 59-66. 2. Marumori, H., Yonezawa, H., Narita, T., Kato, H. and Oshinoya, Y., Consideration on bent magnetic levitation apparatus for thin steel plate, Trans. JSME, Vol. 81, No. 823 (2015a), pp. 14-00471 (in Japanese). 3. Marumori, H., Yonezawa, H., Narita, T., Kato, H., Hasegawa, S. and Oshinoya, Y., Bending Levitation Control for Flexible Steel Plate Fundamental Consideration on Effective Levitation Angle, Journal of the Japan Society of Applied Electromagnetics and Mechanics, Vol. 23, No. 2 (2015b), pp. 386-392 (in Japanese). 4. Namerikawa, T., Mizutani, D. and Kuroki, S., Robust H.INF. DIA Control of Levitated Steel Plates, IEEJ Trans. IA, Vol. 126, ED-10 (2006), pp. 1319-1324. 5. Narita, T., Hasegawa, S., Oshinoya, Y., Hybrid Electromagnetic Levitation System for Thin Steel Plates Using Permanent Magnets, Journal of the Magnetics Society of Japan, Vol. 37, No. 2 (2013), pp. 29-34.
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1. Bending Magnetic Levitation System of Flexible Steel Plate;Journal of the Japan Society of Applied Electromagnetics and Mechanics;2024
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