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Some features of bulk melt-textured high-temperature superconductors subjected to alternating magnetic fields

机译:交变磁场作用下的块状熔融结构高温超导体的某些特征

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摘要

Monolithic, large grain, (RE)Ba2Cu3O7 high-temperature superconductors (where RE denotes a rare-earth ion) are known to be able to trap fields in excess of several teslas and represent thus an extremely promising competing technology for permanent magnet in several applications, e.g. in motors and generators. In any rotating machine, however, the superconducting permanent magnet is subjected to variable (transient, or alternating) parasitic magnetic fields. These magnetic fields interact with the superconductor, which yields a reduction of the remnant magnetization. In the present work we quantify these effects by analysing selected experimental data on bulk melt-textured superconductors subjected to AC fields. Our results indicate that the non-uniformity of superconducting properties in rather large samples might lead to unusual features and need to be taken into account to analyse the experimental data. We also investigate the evolution of the DC remnant magnetization of the bulk sample when it is subjected to a large number of AC magnetic field cycles, and investigate the experimental errors that result from a misorientation of the sample or a mispositioning of the Hall probe. The time-dependence of the remnant magnetization over 100000 cycles of the AC field is shown to display distinct regimes which all differ strongly from the usual decay due to magnetic relaxation.
机译:众所周知,单片大晶粒(RE)Ba2Cu3O7高温超导体(其中RE表示稀土离子)能够俘获超过几个特斯拉的磁场,因此代表了一种极有希望的永磁技术竞争应用,例如在电动机和发电机中。然而,在任何旋转机器中,超导永磁体都受到可变(瞬态或交变)寄生磁场的影响。这些磁场与超导体相互作用,从而减少了剩余磁化强度。在当前的工作中,我们通过分析经受交流电场的块状熔融纹理超导体的实验数据来量化这些影响。我们的结果表明,在相当大的样本中超导特性的不均匀性可能会导致异常特征,因此需要考虑这些因素来分析实验数据。我们还研究了大体积样品受到大量AC磁场循环时DC剩余磁化强度的演变,并研究了由于样品方向错误或霍尔探头位置错误而导致的实验误差。交流磁场在100000次循环中的剩余磁化强度随时间的变化显示出不同的状态,这些状态都与由于磁弛豫而引起的通常的衰减有很大不同。

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