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Axial magnetic bearing development for the BiVACOR Rotary BiVAD/TAH

机译:用于BiVACOR旋转BiVAD / TAH的轴向磁轴承开发

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摘要

A suspension system for the BiVACOR biventricularudassist 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 ofudthemagnetic 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 theudimpeller of an artificial heart to improve device lifetime and reduce blood damage.
机译:BiVACOR双心室/ udassist装置(BiVAD)的悬挂系统已经开发和测试。该设备具有两个安装在同一旋转毂上的半开放式离心叶轮。通过转子沿轴向的运动实现流量平衡。转子通过轴向上的主动磁悬浮系统和径向上的被动流体动力轴承悬挂在泵壳中。本文研究了电磁轴承系统的轴向运动能力以及各个工作点的功耗。使用粘性甘油溶液研究了被动液压轴承的受力能力。确认了轴向转子的运动范围是±0.15 mm,功耗在15.5 W以下。所示的轴颈轴承可使转子在径向上稳定在所需的运行速度下。磁悬浮法是一种适用于人造心脏 udimpeller的可行悬挂技术,可以延长设备寿命并减少血液损害。

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