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Pulsed-field magnetization of bulk HTS magnets in twinned rotor assembly for axial-type rotating machines

机译:轴向旋转电机的双转子组件中大块HTS磁体的脉冲磁场磁化

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We study the pulsed-fleld magnetization of HTS bulks and its application to a rotating synchronous machine of axial-gap type. To increase the output performance of the rotating machine, the multiple rotor structure is designed with the alternation of the rotor with Gd-bulks and the fixed armature. Thus, we obtain a redundancy for the rotor magnet operation without additional current leads or slip rings. To assess the present redundancy, we show the result of the pulsed-field magnetization for Gd-bulks in the above-mentioned multiple rotor geometry. Two Gd-bulks 60 mm in diameter and 19 mm thick were inserted into three vortex-type Cu coils. They were immersed in liquid nitrogen. The pulsed current was applied to three serial vortex-type coils. The maximum applied magnetic filed was 5.7 T with a rise time of 6.6 ms. The trapped fields for the two Gd-bulk were 0.851 and 0.835 T, respectively. We showed that it is possible to perform pulsed-field magnetization for two Gd-bulks sandwiched between three armature vortex-type Cu coils, i.e., a double-layered twin rotor assembly.
机译:我们研究了高温超导块的脉冲磁场磁化及其在轴向间隙型旋转同步电机中的应用。为了提高旋转电机的输出性能,设计了多转子结构,其中转子带有Gd本体和固定电枢交替使用。因此,我们无需使用额外的电流引线或滑环即可获得转子磁体运行的冗余。为了评估当前的冗余度,我们显示了上述多转子几何结构中Gd体的脉冲磁场磁化结果。将两个直径为60 mm,厚度为19 mm的Gd块插入三个涡旋型Cu线圈中。将它们浸入液氮中。脉冲电流被施加到三个串联涡流型线圈。施加的最大磁场为5.7 T,上升时间为6.6 ms。两个Gd体的俘获场分别为0.851 T和0.835T。我们表明,可以对夹在三个电枢涡流型Cu线圈(即双层双转子组件)之间的两个Gd本体执行脉冲磁场磁化。

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