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Development of a Vacuum Pump using Axial-Gap Self-Bearing Motor and Superconducting Magnetic Bearing

机译:使用轴向间隙自轴承电机和超导磁轴的真空泵的开发

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In recent years, superconducting technology has rapidly advanced and has been applied to several devices like magnetoencephalography (MEG) and magnetic resonance imaging (MRI). Superconductivity occur at extremely low temperatures, hence liquid helium is always used to achieve it. In order to conserve liquid helium, a circulation system has been recently developed. In the developed system, a pump will be used for cooling liquid helium. In addition, this pump will improve the capability of medical devices that use superconducting coils. In this paper, we propose the development of a vacuum pump that can be used at extremely low temperatures by using axial self bearing motor (ASBM) and superconducting magnetic bearing (SMB). The pump has the advantages of no friction, as there is no contact, high efficiency and no maintenance. The design of the pump is presented, and the control method is theoretically and practically analyzed. We performed an experiment to confirm that the reliability of the proposed vacuum pump.
机译:近年来,超导技术已迅速先进,已应用于磁性脑图(MEG)和磁共振成像(MRI)等多个器件。超导性在极低的温度下发生,因此液氦总是用来实现它。为了保护液氦,最近已经开发了循环系统。在开发系统中,泵将用于冷却液氦。此外,该泵将改善使用超导线圈的医疗装置的能力。在本文中,我们提出了一种通过使用轴向自轴承电动机(ASBM)和超导磁轴承(SMB)在极低温度下使用的真空泵的开发。泵的优点没有摩擦,因为没有接触,高效率,没有维护。提出了泵的设计,理论上和实际分析了控制方法。我们进行了实验,以确认所提出的真空泵的可靠性。

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