Axial magnetic bearing development for the BiVACOR Rotary BiVAD/TAH


Autoria(s): Greatrex, N.A.; Timms, D.L.; Kurita, N.; Palmer, E.W.; Masuzawa, T.
Data(s)

2010

Resumo

A suspension system for the BiVACOR biventricular assist device (BiVAD) has been developed and tested. The device features two semi-open centrifugal impellers mounted on a common rotating hub. Flow balancing is achieved through the movement of the rotor in the axial direction. The rotor is suspended in the pump casings by an active magnetic suspension system in the axial direction and a passive hydrodynamic bearing in the radial direction. This paper investigates the axial movement capacity of themagnetic bearing system and the power consumption at various operating points. The force capacity of the passive hydrodynamic bearing is investigated using a viscous glycerol solution. Axial rotor movement in the range of ±0.15 mm is confirmed and power consumption is under 15.5 W. The journal bearing is shown to stabilize the rotor in the radial direction at the required operating speed. Magnetic levitation is a viable suspension technique for the impeller of an artificial heart to improve device lifetime and reduce blood damage.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/38653/

Publicador

Institute Of Electrical and Electronic Engineers

Relação

http://eprints.qut.edu.au/38653/1/2011000590_N_Greatrex_ePrints_18.11.10_Published_Version.pdf

DOI:10.1109/TBME.2009.2033389

Greatrex, N.A., Timms, D.L., Kurita, N., Palmer, E.W., & Masuzawa, T. (2010) Axial magnetic bearing development for the BiVACOR Rotary BiVAD/TAH. IEEE Transactions on Biomedical Engineering, 57(3), p. 714.

Direitos

Copyright 2009 IEEE

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Fonte

Faculty of Built Environment and Engineering; School of Engineering Systems

Palavras-Chave #090304 Medical Devices #Artificial Biological Organs #Blood Pumps #Electro-magnetic Forces #Magnetic Levitation
Tipo

Journal Article