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Magnetizing high-T-c superconducting coated conductor stacks using a transformer-rectifier flux pumping method

机译:使用变压器整流磁通泵送方法磁化高T-C超导涂层堆叠

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摘要

High-T-c superconducting (HTS) coated conductor stacks have been demonstrated as very promising superconducting permanent magnets (PMs), to be used in applications like rotary motors and levitation devices. In this paper, we present a novel magnetization method to address a key problem in the application of HTS stacks, which is effective magnetization with compact, light and efficient setups. The proposed method, transformer-rectifier flux pumping, uses the mechanism developed for HTS coils to magnetize the modified HTS stacks. The accumulation of flux with time is achieved in the HTS stacks. The results show that the flux pump can effectively magnetize long HTS stacks with a magnetic field applied to a much smaller area. Operational characteristics of the flux pump are experimentally studied and some explanations are proposed for the distinct behaviors observed in the experiments. This study heralds a new direction in the magnetization of superconducting PMs and has the potential to be a practical method for industrial applications.
机译:已经证明了高T-C超导(HTS)涂覆的导体堆叠作为非常有前途的超导永磁体(PMS),以用于旋转电动机和悬浮装置等应用。在本文中,我们提出了一种新的磁化方法来解决HTS堆叠应用中的关键问题,其具有紧凑,光和有效的设置有效磁化。所提出的方法,变压器 - 整流器通量泵送,采用为HTS线圈开发的机构来磁化改进的HTS堆叠。 HTS堆叠中实现了随时间的累积。结果表明,磁通泵可以有效地磁化长HTS堆叠,磁场施加到更小的区域。通过实验研究了磁通泵的操作特性,提出了一些解释在实验中观察到的不同行为。这项研究将预示着超导PMS磁化的新方向,并且具有工业应用的实用方法。

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