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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Pulsed-Field Magnetizing Characteristics of Rectangular-Shaped Gd–Ba–Cu–O Bulk Using Split- and Solenoid-Type Coils
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Pulsed-Field Magnetizing Characteristics of Rectangular-Shaped Gd–Ba–Cu–O Bulk Using Split- and Solenoid-Type Coils

机译:使用分体式和螺线管式线圈的矩形Gd-Ba-Cu-O块体的脉冲场磁化特性

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We have investigated the trapped-field characteristics of a rectangular-shaped Gd–Ba–Cu–O bulk (33 × 33 × 15 mm3) magnetized by pulsed-field magnetization (PFM) using split- and solenoid-type coils. A soft iron yoke was set below the bulk for the solenoid coil and two yokes are inserted in the bores of the split coil. The maximum trapped field BZmax at the center of the bulk surface was 1.73 T at 40 K in the case of the solenoid coil, with a distorted profile. On the other hand BZmax was enhanced to 3.05 T at 40 K for the split coil with two yokes for which a symmetric trapped-field profile was observed. The behavior of the magnetic flux motion indicated two conditions for the enhancement of the trapped field: that the magnetic flux intrudes easily into the bulk even for lower applied fields and then saturates with minimal flux creep. We have also investigated the electromagnetic and thermal properties of the bulk during PFM using a numerical simulation in which the magnetic flux tended to align along the z -axis due to the presence of the soft iron yoke. The use of the split coil with two yokes is effective in enhancing the trapped field for the rectangular-shaped bulks.
机译:我们研究了使用分体和螺线管型线圈通过脉冲场磁化(PFM)磁化的矩形Gd-Ba-Cu-O块体(33×33×15 mm3)的俘获场特性。将软铁轭设置在电磁线圈的主体下方,并将两个轭插入分流线圈的孔中。在螺线管线圈的情况下,在主体表面中心的最大俘获场BZmax在40 K时为1.73 T,轮廓发生了变形。另一方面,对于带有两个磁轭的分离线圈,在40 K时BZmax提高到3.05 T,观察到对称的俘获场分布。磁通量运动的行为表明了增强俘获场的两个条件:即使对于较低的外加磁场,磁通量也容易侵入主体,然后以最小的磁通量蠕变饱和。我们还使用数值模拟研究了PFM过程中块体的电磁和热性能,在该数值模拟中,由于存在软铁轭,磁通量倾向于沿z轴对齐。具有两个磁轭的分离线圈的使用对于增强矩形块的俘获场是有效的。

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