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Pulsed Field Magnetization of Bridge-Seeded Bulk YBCO Using Solenoid and Split Coils

机译:使用螺线管和分开线圈的桥式散装YBCO脉冲场磁化

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摘要

The multi-seeding process has the potential to enlarge the sample size of (RE)BCO (where RE = rare earth or Y) single-grain, bulk superconductors with improved fabrication speed, and in previous studies on multi-seeding, a significant improvement was made in the alignment of the seeds in such samples using a novel bridge-seeding technique. In this paper, we report the experimental measurements of the pulsed field magnetization (PFM) of a 0°-0° bridge-seeded Y-Ba-Cu-O (YBCO) sample. The PFM is carried out using a solenoid coil, as well as a split coil arrangement with an iron yoke, at temperature of 65, 40 and 20 K, and the resultant trapped fields and magnetic flux dynamics for these two PFM techniques are compared. It is shown that such bridge-seeded bulk YBCO can be fabricated that performs as a bulk magnet with trapped fields comparable to or better than standard, single-seeded high-$J_ext{c}$ samples, with the potential of enlarging the sample size. Furthermore, the split coil arrangement with an iron yoke is useful to enhance the trapped field and has a positive effect on the maximum temperature rise in the sample, which increases at lower temperatures and seriously impacts the achievable trapped field from PFM.
机译:该多播方法具有放大在关于多播先前研究的(RE)BCO(其中RE =稀土或Y)单粒,堆积超导体具有改进的制造速度,和样本大小的可能性,一个显著改善在使用新的桥接接种技术,例如样品中的种子的对准作出。在本文中,我们报道了一个0°-0°桥接种钇钡铜氧(YBCO)样品的脉冲场磁化(PFM)的实验测量。所述PFM是使用螺线管线圈,以及与铁轭的分割线圈装置,在65,40和20的K温度,并且这两个PFM技术所得到的截留场和磁通量动力学进行了比较。结果表明,这样的桥种子批量YBCO可以制造执行与俘获字段相当或比标准,单个种子高$ J_ 文本{C}更好$样品块状磁体,具有扩大的电位样本大小。另外,与铁轭的分割线圈装置是增强俘获领域是有用的,并且对样品中的最大温升,在较低温度下从PFM严重影响可达到的俘获字段,它增加和积极的作用。

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