首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Magnetic levitation and guidance performance of Y-Ba-Cu-O and Gd-Ba-Cu-O bulk superconductors under low ambient pressure
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Magnetic levitation and guidance performance of Y-Ba-Cu-O and Gd-Ba-Cu-O bulk superconductors under low ambient pressure

机译:低环境压力下Y-Ba-Cu-O和Gd-Ba-Cu-o块体超导体的磁悬浮和引导性能

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The high-temperature superconducting Maglev-evacuated tube transport (HTS Maglev-ETT) system has significant potential for practical applications. In order to employ HTS bulks in an ETT system, it is necessary to study the magnetic levitation and guidance performance of bulk superconductors under low ambient pressure conditions that are representative of those inside the tube. As a result, we have investigated the Maglev performance of Y-Ba-Cu-O (YBCO) and Gd-Ba-Cu-O (GdBCO) single grain, bulk superconductors under different ambient pressures of 100 kPa, 60 kPa and 20 kPa using a bespoke pressure-controlling platform, in which the superconductors were positioned above a Halbach permanent magnet guideway. The levitation forces under conditions of field-cooling (FC) and zero-field-cooling (ZFC) have been measured and analyzed. The guidance force for the FC case and the levitation force relaxation for the ZFC case were also measured. It was found from the experimental results that the Maglev performance of both types of bulk superconductor improves significantly by reducing the ambient pressure in their immediate working environment. The levitation forces of YBCO and GdBCO bulk superconductors were observed to increase by 11.6% and 4.4% in the case of FC, and by 20.3% and 13.7% in the case of ZFC, respectively, as the ambient pressure changed from 100 kPa to 20 kPa. An improvement of the guidance force and an inhibition of the levitation force relaxation were also observed for these materials. The supercooled liquid nitrogen cryogen in the low-pressure environment further reduces the temperature, which, in turn, increases the critical current density J(c) of the bulk superconductors and improves their levitation performance. These results provide further evidence of the significant advantages of combining HTS Maglev with evacuated tube technologies as a key enabling feature of the HTS Maglev-ETT system. The data further indicate that YBCO bulk superconductors tend to b
机译:高温超导磁悬浮管输送管输送(HTS Maglev-Ett)系统具有显着的实际应用潜力。为了在ETT系统中使用HTS块,需要在低环境压力条件下研究散装超导体的磁悬浮和引导性能,这些压力条件是代表管内的那些。因此,我们研究了Y-Ba-Cu-O(YBCO)和Gd-Ba-Cu-O(GDBCO)单粒,散装超导体在100kPa,60kPa和20kPa的不同环境压力下的Maglev性能使用定制的压力控制平台,其中超导体位于Halbach永磁导轨上方。已经测量并分析了现场冷却(Fc)和零场冷却(ZFC)条件下的悬浮力。还测量了FC案例的引导力和ZFC案例的悬浮力松弛。从实验结果中发现,两种类型的散装超导体的磁悬浮性能通过降低其直接工作环境中的环境压力而显着改善。在FC的情况下,观察到YBCO和GDBCO散装超导体的悬浮力分别增加11.6%和4.4%,分别在ZFC的情况下增加20.3%和13.7%,因为环境压力从100kPa变为20 KPA。对于这些材料,还观察到改善引导力和对悬浮力松弛的抑制。低压环境中的过冷液氮冷冻剂进一步降低了温度,又增加了散装超导体的临界电流密度J(C)并提高了它们的悬浮性能。这些结果提供了进一步的证据,即将HTS Maglev与抽空管技术相结合的显着优势作为HTS Maglev-Ett系统的关键能够特征。数据进一步表明YBCO散装超导体倾向于b

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