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Levitation Force Transition of High-Tc Superconducting Bulks in Varying External Magnetic Field

机译:高Tc超导本体在变化外部磁场中的悬浮力跃迁

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摘要

In practical application of a High-Tc Superconducting (HTS) maglev vehicle, the onboard HTS bulks are inevitably exposed to a varying inhomogeneous field due to present processing and assembling technology of the permanent magnetic guideway (PMG). To explore the influence on the levitation forces of ${rm YBa}_{2}{rm Cu}_{3}{rm O}_{7-{rm x}}$ bulk samples in such changing external magnetic field due to different traveling speeds, we experimentally investigated the general transition of said levitation force under such varying external field simulated by a spinning circular PMG. The force waves attenuated in accordance to the varying of the applied field dependent on the PMG's rotating speed: attenuating when speeding up and rising slightly when speeding down. This observed phenomenon is of great importance in design and application of the HTS maglev system.
机译:在高Tc超导(HTS)磁悬浮车辆的实际应用中,由于目前永磁导轨(PMG)的加工和组装技术,车载HTS块不可避免地会暴露于变化的不均匀磁场中。探索在这种外部磁场变化的情况下,$ {rm YBa} _ {2} {rm Cu} _ {3} {rm O} _ {7- {rm x}} $大块样品对悬浮力的影响。在不同的行进速度下,我们通过实验研究了在旋转的圆形PMG模拟的这种变化的外部场下,所述悬浮力的一般转变。力波根据取决于PMG旋转速度的施加场的变化而衰减:加速时衰减,而减速时则略微上升。这种观察到的现象在高温超导磁悬浮系统的设计和应用中非常重要。

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