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A study on permanent magnet topologies for hybrid bearings for medical drives applied in Ventricular Assist Devices

机译:心室辅助设备中用于医疗驱动的混合轴承的永磁拓扑研究

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摘要

In industrialized countries cardiovascular diseases are the major cause of death. The last clinical therapy option for some patients, suffering from terminal heart diseases, is donor heart transplantation. As the available number of donor organs is decreasing, many patients die while waiting for a transplant. For this reason Ventricular Assist Devices (VADs), which can mechanically support the human heart to achieve a sufficient perfusion of the body, are under development. For an implantable VAD, design constraints have to be deduced from the physiological conditions in the human body. In case of a VAD drive, these constraints are for example dimensions, electric losses, which might result in an overheating of blood, and a long durability. Therefore a hybrid permanent magnet hydrodynamic bearing is designed in this paper, which works passively and contactless. Based on Finite Element simulations of magnetic fields, various permanent magnet topologies are studied in terms of axial forces and stiffness.
机译:在工业化国家,心血管疾病是主要的死亡原因。对于某些患有晚期心脏病的患者,最后的临床治疗选择是供体心脏移植。随着供体器官数量的减少,许多患者在等待移植时死亡。因此,正在开发能够机械地支撑人的心脏以实现对身体的充分灌注的心室辅助装置(VAD)。对于可植入的VAD,必须从人体的生理条件中推导出设计约束。在VAD驱动器的情况下,这些限制因素包括尺寸,电损耗(可能导致血液过热)和长寿命。因此,本文设计了一种混合动力永磁流体动力轴承,它可以被动且无接触地工作。基于磁场的有限元模拟,从轴向力和刚度方面研究了各种永磁体拓扑。

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