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Magnetization Method Design of Bulk Multi-seeded High Temperature Superconductors

机译:散装多种高温超导体磁化方法设计

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The potential application of bulk high temperature superconductor (HTS) magnets has attracted much attention because of the potential high trapped flux in HTS magnets. This paper focuses on the magnetization method design of bulk multi-seeded HTS magnets for obtaining their better flux-trapping performance. Firstly, three different magnetization methods were carried out based on the current experimental setup to find a better way of magnetizing a bulk melt-texture three-seeded YBaCuO superconductor. The experimental results indicated that when the three domains of this three-seeded YBaCuO bulk were magnetized in order, the maximum trapped flux was higher than that when only one domain was magnetized. However, this method costs about three times of the magnetization time than the other two methods and the increasing ratio was only about 11.11%. It has been found that another method of magnetizing only the middle domain could also get a good result such as the uniformity of trapped flux is good. In order to improve the current experimental magnetization conditions for further improvement, two sheets of iron were designed to attach two poles of the electromagnet (Lakeshore, Model EM4-CV) for increasing the magnetizing area, and that all domains of a bulk multi-seeded HTS can be magnetized in one time. Firstly, the appropriate size and thickness of the iron sheets was simulated and optimized by Comsol Multiphysics. It has been found that the magnetic field between two poles was highest when the thickness of iron was 2 mm and the length was 68 mm. Then, the simulating and optimization results had been verified by the following experiments. According to the comparison experiments, it is proved that to choose the magnetization method that only magnetizing the middle domain with the improved setup is helpful to obtain larger and more homogeneous magnetic flux for the bulk multi-seeded HTS magnet due to the added iron sheets.
机译:由于HTS磁体中的潜在高捕获的通量,散装高温超导体(HTS)磁铁的潜在应用引起了很多关注。本文侧重于散装多种HTS磁体的磁化方法设计,以获得更好的磁通诱捕性能。首先,基于当前实验装置进行三种不同的磁化方法,以找到磁化散装熔体三播式YBacuo超导体的更好方法。实验结果表明,当该三播种YBACUO散装块的三个域按顺序磁化时,最大捕获的助焊剂高于仅磁化一个结构域时。然而,该方法比其他两种方法成本大约三次磁化时间,并且增加的比率仅为11.11%。已经发现,另一种磁化中间结构域的方法也可以获得良好的结果,例如捕获的通量的均匀性好。为了改善目前的实验磁化条件以进一步改进,设计了两片铁,用于连接电磁铁(Lakeshore,型EM4-CV)的两极以增加磁化区域,并且散装多种子的所有域HTS可以一次磁化。首先,通过COMSOL Multiphysics模拟和优化了铁板的适当尺寸和厚度。已经发现,当铁的厚度为2mm时,两个极之间的磁场最高,并且长度为68mm。然后,通过以下实验验证了模拟和优化结果。根据比较实验,证明了为了选择仅利用改进的设置磁化中间结构域的磁化方法,这有助于获得由于添加的铁板的块状多种子HTS磁体的较大和更均匀的磁通量。

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