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Remagnetization effects due to lateral displacement above a PMG on bulk HTS magnet

机译:永磁体HTS磁体上PMG上方的横向位移引起的再磁化效应

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摘要

For a high-T_c superconducting (HTS) maglev system with large force requirements, the use of magnetized bulk high-Tc superconductor magnets (MBSCMs) is a good candidate because of its strong flux pinning ability and corresponding high trapped flux. Different from the rare-earth permanent magnet (PM), the trapped flux of a MBSCM is sustained by the supercurrent produced by a magnetizing process, so the trapped flux is sensitive to variations of the supereurrent. The lateral displacement of a MBSCM above a PM guideway (PMG) will provide disturbance of the applied field and then alter the supercurrent as a process of remagnetization. Different magnetization histories will bring different remagnetization characteristics and consequently diverse levitation performances for a MBSCM during the lateral displacements. When the MBSCMs are applied into the HTS maglev system, the influence of lateral displacements on levitation performance should be taken into consideration. This article investigates the remagnetization characteristics of a MBSCM when it is subject to the lateral displacements above a PMG with different trapped magnetic flux and opposite magnetization polarities. Relevant analyses about the internal supercurrent configuration based on the critical state model are also included to better understand the remagnetization characteristic of a MBSCM.
机译:对于具有较大受力要求的高T_c超导(HTS)磁悬浮系统,使用磁化的高Tc超导磁体(MBSCM)是一个不错的选择,因为它具有强大的磁通钉扎能力和相应的高捕获通量。与稀土永磁体(PM)不同,MBSCM的俘获通量由磁化过程产生的超电流所维持,因此该俘获通量对超合金的变化敏感。 MBSCM在PM导轨(PMG)上方的横向位移将对所施加的磁场造成干扰,然后在重新磁化过程中改变超电流。不同的磁化历史将为MBSCM带来不同的磁化特性,从而在横向位移过程中产生不同的悬浮性能。将MBSCM应用于高温超导磁悬浮系统时,应考虑横向位移对悬浮性能的影响。本文研究了MBSCM在PMG上方受到不同俘获磁通量和相反磁化极性的横向位移时的再磁化特性。还包括基于临界状态模型的有关内部超电流配置的相关分析,以更好地了解MBSCM的磁化特性。

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