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Dynamic levitation performance of Gd-Ba-Cu-O and Y-Ba-Cu-O bulk superconductors under a varying external magnetic field

机译:不同外部磁场下GD-BA-CU-O和Y-BA-CU-o块体超导体的动态悬浮性能

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We report that the dynamic levitation force of bulk high temperature superconductors (HTS) in motion attenuates when exposed to an inhomogeneous magnetic field. This phenomenon has significant potential implications for the long-term stability and running performance of HTS in maglev applications. In order to suppress the attenuation of the levitation force associated with fluctuations in magnetic field, we compare the dynamic levitation performance of single grain Y-Ba-Cu-O (YBCO) and Gd-Ba-Cu-O (GdBCO) bulk superconductors with relatively high critical current densities. A bespoke HTS maglev dynamic measurement system (SCML-03) incorporating a rotating circular permanent magnet guideway was employed to simulate the movement of HTS in a varying magnetic field at different frequencies (i.e. speed of rotation). The attenuation of the levitation force during dynamic operation, which is key parameter for effective maglev operation, has been evaluated experimentally. It is found that GdBCO bulk superconductors that exhibit superior levitation force properties are more able to resist the attenuation of levitation force compared with YBCO bulk materials under the same operating conditions. This investigation indicates clearly that GdBCO bulk superconductors can play an important role in suppressing attenuation of the levitation force, therefore improving the long-term levitation performance under dynamic operating conditions. This result is potentially significant in the design and application of HTS in maglev systems.
机译:我们报告说,在暴露于非均匀磁场时,散装高温超导体(HTS)的动态悬浮力在运动中衰减。这种现象对Maglev应用中HTS的长期稳定性和运行性能具有显着的潜在影响。为了抑制与磁场波动相关的悬浮力的衰减,我们比较单谷物Y-BA-CU-O(YBCO)和GD-BA-CU-O(GDBCO)散装超导体的动态悬浮性能相对高的临界电流密度。采用包含旋转圆形永磁磁铁导线的定制HTS Maglev动态测量系统(SCML-03)来模拟HTS在不同频率的变化磁场中的运动(即旋转速度)。实际上评估了动态操作期间悬浮力的衰减,这是有效磁悬浮操作的关键参数,已经在实验中得到了评估。结果发现,与在相同的操作条件下,具有较高悬浮力性能的GDBCO散装超导体更能够抵抗悬浮力的衰减。这项研究表明,GDBCO散装超导体可以在抑制悬浮力的衰减方面发挥重要作用,从而提高了动态操作条件下的长期悬浮性能。该结果在Maglev系统中的HTS设计和应用中可能是显着的。

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