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Magnetic levitation performance of miniaturized magnetically levitated motor with 5-DOF active control

机译:具有五自由度主动控制的小型磁悬浮电动机的磁悬浮性能

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Mechanical circulatory support (MCS) therapy plays a significant role in an alternative therapy of heart transplants for pediatric heart disease patients. However, continuous flow rotary MCS devices for pediatric patients are still undergoing development, and have not been clinically available technology. Technical difficulties, such as high durability, better blood compatibility and miniature device size, prevent the pediatric MCS devices development. In this study, a double stator axial gap maglev motor for pediatric MCS device has been developed. The maglev motor has two identical motor stators, and a levitated rotor impeller which is aligned between the stators. The levitated rotor impeller is fully suspended with 5-degrees of freedom (5-DOF) active control. A double stator mechanism enhances motor torque production. A miniaturized maglev motor was designed and developed based on FEM magnetic field analysis for use in implantable ventricular assist devices (VADs). The diameter and height of the developed maglev motor are 22 mm and 33 mm. This paper is an initial report on the magnetic levitation and rotation performance of the miniaturized maglev motor. The levitated rotor impeller was magnetically levitated and rotated with the 5-DOF active control. The oscillation amplitudes (x, y and z) and inclination angles (θx and θy) of the levitated rotor impeller were then evaluated in both air and water. The developed maglev motor achieved non-contact rotation up to 1600 rpm in air and 4500 rpm in water, respectively. The oscillation amplitudes and inclination angles were sufficiently suppressed in water due to fluid damping. After these experiments, a magnetic circuit of the maglev motor was modified in order to achieve further stable levitation. The developed maglev motor then indicated potential to achieve the practical use of maglev rotatory pediatric VAD.
机译:机械循环支持(MCS)治疗在小儿心脏病患者的心脏移植替代疗法中起着重要作用。然而,用于小儿患者的连续流旋转式MCS设备仍在开发中,尚未成为临床可用的技术。诸如高耐用性,更好的血液相容性和微型设备尺寸之类的技术难题阻碍了儿科MCS设备的发展。在这项研究中,开发了一种用于儿童MCS装置的双定子轴向间隙磁悬浮电动机。磁悬浮电动机具有两个相同的电动机定子,以及一个在定子之间对齐的悬浮转子叶轮。悬浮转子叶轮完全悬挂,具有5自由度(5-DOF)主动控制。双定子机构提高了电机扭矩的产生。基于FEM磁场分析设计和开发了一种小型磁悬浮电动机,用于植入式心室辅助设备(VAD)。研发的磁悬浮电动机的直径和高度分别为22毫米和33毫米。本文是有关小型磁悬浮电动机的磁悬浮和旋转性能的初步报告。悬浮转子叶轮通过5自由度主动控制进行磁悬浮和旋转。然后在空气和水中都评估了悬浮转子叶轮的振荡幅度(x,y和z)和倾斜角(θx和θy)。研发的磁悬浮电动机在空气中的非接触转速分别高达1600 rpm和在水中的转速高达4500 rpm。由于流体阻尼,在水中的振荡幅度和倾斜角被充分抑制。经过这些实验后,对磁悬浮电动机的磁路进行了修改,以实现更稳定的悬浮。然后,开发的磁悬浮电动机表明了实现磁悬浮旋转小儿VAD实际应用的潜力。

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