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Magnetizing of permanent magnets using HTS bulk magnets

机译:使用HTS大块磁铁对永磁体进行磁化

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摘要

A demagnetized Nd–Fe–B permanent magnet was scanned just above the magnetic pole which contains the HTS bulk magnet generating a magnetic field of 3.27 T. The magnet sample was subsequently found to be fully magnetized in the open space of the static magnetic fields. We examined the magnetic field distributions when the magnetic poles were scanned twice to activate the magnet plate inversely with various overlap distances between the tracks of the bulk magnet. The magnetic field of the ‘‘rewritten’’magnet reached the values of the magnetically saturated region of the material, showing steep gradients at the border of each magnetic pole. As a replacement for conventional pulse field magnetizing methods,this technique is proposed to expand the degree of freedom in the design of electromagnetic devices, and is proposed as a novel practical method for magnetizing rare-earth magnets, which have excellent magnetic performance and require intense fields of more than 3 T to be activated.
机译:在包含HTS大块磁体的磁极正上方扫描了去磁的Nd-Fe-B永磁体,该大块磁体产生3.27 T的磁场。随后发现该磁体样本在静态磁场的开放空间中被完全磁化。我们检查了两次磁极扫描以反向激活大块磁体磁道之间不同重叠距离的磁板时的磁场分布。 “重写”磁体的磁场达到了材料的磁饱和区域的值,在每个磁极的边界处显示出陡峭的梯度。代替常规的脉冲场磁化方法,该技术被提出来扩大电磁装置的设计的自由度,并且被提议作为一种磁化性能优异且需要高强度的稀土磁体的新型实用方法。超过3 T的磁场被激活。

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