A bearingless motor utilizing a permanent magnet free structure for disposable centrifugal blood pumps

Author:

RAO Jun1,HIJIKATA Wataru2,SHINSHI Tadahiko2

Affiliation:

1. Interdisciplinary Graduate School of Science and Engineering, Tokyo Institute of Technology

2. Precision and Intelligence Laboratory, Tokyo Institute of Technology

Publisher

Japan Society of Mechanical Engineers

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Reference19 articles.

1. Asama, J., Chiba, A., Oiwa, T., Fukao, T. and Rahman, M. A., A design consideration of a novel bearingless disk motor for artificial heart, Energy Conversion Congress and Exposition (ECCE) (2009), pp.1693-1699.

2. Asama, J., Kanehara, D., Oiwa, T. and Chiba, A., Performance investigation of a centrifugal pump with a consequent-pole bearingless motor, Energy Conversion Congress and Exposition (ECCE) (2012), pp.3663-3669.

3. Chan, C. H., Pieper, I. L., Hambly, R., Radley, G., Jones, A., Friedmann, Y., Hawkins, K. M., Westaby, S., Foster, G., and Thornton, C. A., The CentriMag Centrifugal Blood Pump as a Benchmark for In Vitro Testing of Hemocompatibility in Implantable Ventricular Assist Devices, Artificial Organs, Vol.39, No.2 (2015), pp.93-101.

4. De Robertis, F., Birks, E.J., Rogers, P., Dreyfus, G., Pepper, J.R. and Khaghani, A., Clinical performance with the Levitronix Centrimag short-term ventricular assist device, The Journal of heart and lung transplantation, Vol.25, No.2 (2006), pp.181-186.

5. Higuchi, T., Horikoshi, A. and Komori, T., Development of an actuator for super clean rooms and ultra-high vacuum, Proc. of 2nd Int. Symp. on Magnetic Bearings (1990), pp.115–122.

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