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新型组合磁悬浮轴承磁力泵

Novel maglev pump with a combined magnetic bearing.

作者信息

Onuma Hiroyuki, Murakami Michiko, Masuzawa Toru

机构信息

Graduate School of Science and Engineering, Ibaraki University, 4-12-1 Nakanarusawa-cho, Hitachi, Ibaraki 316-8511, Japan.

出版信息

ASAIO J. 2005 Jan-Feb;51(1):50-5. doi: 10.1097/01.mat.0000151149.23519.19.

Abstract

The newly developed pump is a magnetically levitated centrifugal blood pump in which active and passive magnetic bearings are integrated to construct a durable ventricular assist device. The developed maglev centrifugal pump consists of an active magnetic bearing, a passive magnetic bearing, a levitated impeller, and a motor stator. The impeller is set between the active magnetic bearing and the motor stator. The active magnetic bearing uses four electromagnets to control the tilt and the axial position of the impeller. The radial movement of the levitated impeller is restricted with the passive stability dependent upon the top stator and the passive permanent magnetic bearing to reduce the energy consumption and the control system complexity. The top stator was designed based upon a magnetic field analysis to develop the maglev pump with sufficient passive stability in the radial direction. By implementing this analysis design, the oscillating amplitude of the impeller in the radial direction was cut in half when compared with the simple shape stator. This study concluded that the newly developed maglev centrifugal pump displayed excellent levitation performance and sufficient pump performance as a ventricular assist device.

摘要

新开发的泵是一种磁悬浮离心泵,其中集成了主动和被动磁轴承,以构建一种耐用的心室辅助装置。所开发的磁悬浮离心泵由主动磁轴承、被动磁轴承、悬浮叶轮和电机定子组成。叶轮设置在主动磁轴承和电机定子之间。主动磁轴承使用四个电磁铁来控制叶轮的倾斜和轴向位置。悬浮叶轮的径向运动通过依赖顶部定子和被动永磁轴承的被动稳定性来限制,以降低能耗和控制系统的复杂性。顶部定子是基于磁场分析设计的,以开发在径向上具有足够被动稳定性的磁悬浮泵。通过实施这种分析设计,与简单形状的定子相比,叶轮在径向上的振荡幅度减半。本研究得出结论,新开发的磁悬浮离心泵作为心室辅助装置表现出优异的悬浮性能和足够的泵性能。

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