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Synchronous Reluctance Machines as Drives for Rotary Anode X-Ray Tubes-A Feasibility Study

机译:同步磁阻机作为旋转阳极X射线管的驱动 - 一种可行性研究

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This paper investigates the possibility of replacing the rotor of an existing X-ray tube induction machine (IM) with that of a synchronous reluctance machine (SynRM), while keeping the existing IM stator. When compared with other applications, such machines operate with a very large air gap. Furthermore, their non-laminated rotors are placed in a vacuum and may heat up as high as 450°C. The primary design criteria for this special application is to reach a minimum speed of 10800rpm in less than 3 sec, requiring an output torque of 1 Nm. Three different types of SynRM rotors are considered. The capability of these alternative machines to provide the same output torque as the original IM was assessed. In the next step, the losses of the different machines were identified and compared. While all machine designs were identified to be able to provide the desired output torque, the axially-layered rotor proved to be the best option, with more than 25% reduction of the total losses when compared with the original IM.
机译:本文研究了用同步磁阻机(Synrm)的现有X射线管感应机(IM)的转子,同时保持现有的IM定子。与其他应用相比,这种机器以非常大的气隙操作。此外,将它们的非层压转子放置在真空中,并且可以加热高达450℃。对于此特殊应用中主要的设计标准是在不到3秒达到10800rpm的最小速度,需要1nM的输出转矩。考虑了三种不同类型的SynrM转子。这些替代机器的能力作为原始IM被评估为提供相同的输出转矩。在下一步中,确定并比较了不同机器的损失。虽然所有的机器设计被确定为能够提供所希望的输出转矩,轴向分层转子证明当与原始IM相比是最好的选择,总损耗的还原超过25%。

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