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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Pulsed-Field Magnetization of a Superconducting Bulk Magnet After Field Cooling Using a Permanent Magnet
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Pulsed-Field Magnetization of a Superconducting Bulk Magnet After Field Cooling Using a Permanent Magnet

机译:使用永磁体进行磁场冷却后的超导块状磁体的脉冲场磁化

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摘要

This paper proposes an effective magnetizing method in which bulk material is magnetized by field cooling (FC) using a permanent magnet before pulsed-field magnetization (PFM) to improve the efficiency of magnetization. The concept of this method is to form the channel composed of the magnetic field and efficiently penetrate the magnetic flux by PFM of the bulk without heat generation. An Nd-Fe-B magnet was arranged at the growth sector boundary (GSB) or the growth sector region (GSR) on the magnetic pole, and the bulk was cooled to 30 K. After the pre-FC, a single pulsed field was applied, varying in amplitude to 3.9, 4.6, and 5.4 T. Magnetic flux density on the bulk surface was measured during the magnetization, and the trapped field distribution was scanned after PFM. The experimental results showed a decrease in the trapped field for pre-FC at GSR. It was considered that the existing flux by pre-FC blocked the flux penetration of PFM. Afterward, pre-FC using a “C”-shaped magnet was devised, and the validity was confirmed.
机译:本文提出了一种有效的磁化方法,该方法是在脉冲场磁化(PFM)之前使用永磁体通过场冷却(FC)将散装材料磁化,以提高磁化效率。该方法的概念是形成由磁场组成的通道,并通过块的PFM有效地穿透磁通量而不会产生热量。将Nd-Fe-B磁体布置在磁极上的生长扇区边界(GSB)或生长扇区区域(GSR)上,并将块体冷却至30K。应用,幅度变化为3.9、4.6和5.4T。在磁化过程中测量块体表面的磁通密度,并在PFM后扫描捕获的场分布。实验结果表明,在GSR处,前FC的俘获场减小。据认为,前FC产生的现有通量阻碍了PFM的通量渗透。之后,设计了使用“ C”形磁体的预FC,并确认了有效性。

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