Department of Exact Sciences and Earth, Federal University of São Paulo, Rua Prof. Artur Riedel 275, Diadema CEP 09972-270, SP, Brazil.
Artif Organs. 2011 May;35(5):448-53. doi: 10.1111/j.1525-1594.2011.01265.x.
In previous studies, we presented main strategies for suspending the rotor of a mixed-flow type (centrifugal and axial) ventricular assist device (VAD), originally presented by the Institute Dante Pazzanese of Cardiology (IDPC), Brazil. Magnetic suspension is achieved by the use of a magnetic bearing architecture in which the active control is executed in only one degree of freedom, in the axial direction of the rotor. Remaining degrees of freedom, excepting the rotation, are restricted only by the attraction force between pairs of permanent magnets. This study is part of a joint project in development by IDPC and Escola Politecnica of São Paulo University, Brazil. This article shows advances in that project, presenting two promising solutions for magnetic bearings. One solution uses hybrid cores as electromagnetic actuators, that is, cores that combine iron and permanent magnets. The other solution uses actuators, also of hybrid type, but with the magnetic circuit closed by an iron core. After preliminary analysis, a pump prototype has been developed for each solution and has been tested. For each prototype, a brushless DC motor has been developed as the rotor driver. Each solution was evaluated by in vitro experiments and guidelines are extracted for future improvements. Tests have shown good results and demonstrated that one solution is not isolated from the other. One complements the other for the development of a single-axis-controlled, hybrid-type magnetic bearing for a mixed-flow type VAD.
在之前的研究中,我们提出了混合流型(离心和轴向)心室辅助装置(VAD)转子悬浮的主要策略,这些策略最初由巴西 Dante Pazzanese 心脏病学研究所(IDPC)提出。磁悬浮是通过使用磁轴承结构来实现的,其中主动控制仅在一个自由度上执行,即转子的轴向方向。除了旋转之外的其余自由度仅受到成对永磁体之间吸引力的限制。这项研究是 IDPC 和巴西圣保罗大学 Politécnica 学院联合开发项目的一部分。本文展示了该项目的进展,提出了两种有前途的磁轴承解决方案。一种解决方案使用混合磁芯作为电磁执行器,即结合铁和永磁体的磁芯。另一种解决方案使用混合类型的执行器,但磁路由铁芯封闭。经过初步分析,为每个解决方案开发了一个原型泵,并进行了测试。对于每个原型,都开发了无刷直流电机作为转子驱动器。每个解决方案都通过体外实验进行了评估,并提取了未来改进的指南。测试结果表明,一种解决方案并不孤立于另一种解决方案,它们相互补充,为混合流型 VAD 开发单一轴控制的混合磁轴承。