首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Determination of magnetic levitation force properties of bulk MgB2 for different permanent magnetic guideways in different cooling heights
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Determination of magnetic levitation force properties of bulk MgB2 for different permanent magnetic guideways in different cooling heights

机译:不同冷却高度不同永磁导轨块状MGB2磁悬浮性能的测定

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In our study as different from the literature, the magnetic levitation force between a bulk MgB2 and two different permanent magnetic guideway (PMG) arrangements, which are Halbach and Conventional PMGs, were investigated in different cooling heights (CHs) and Field-Cooled (FC) condition at the temperatures of 37 K and 33 K. The cylindrical bulk MgB2 superconductor was fabricated by in-situ solid state reaction process with the diameter of 18 mm and the height of 5 mm. The XRD data indicates well developed MgB2 phase and the Jc value was obtained as 68 kA/cm(2) at 30 K in the self-field. Experimental results show that MgB2 bulk above the Halbach PMG can exhibit better load capability at all the cooling heights between the bulk MgB2 and the PMG due to a more suitable magnetic field distribution. The maximum levitation force for Halbach PMG corresponds to 16.86 N whereas the conventional PMG shows 9.02 N at 37 K in cooling height of 77 mm. Additionally, the maximum levitation force increases while the CH increases because flux exclusion is more effective for larger CHs. It is considered that the experimental results obtained in study are very useful for future Maglev applications, because there are limited number of studies on magnetic levitation force of MgB2 bulk for different MgB2-PMG arrangements. (c) 2020 Elsevier B.V. All rights reserved.
机译:在我们的研究与文献不同,在不同的冷却高度(CHS)和现场冷却(FC)中研究了散装MGB2和两种不同的永磁导轨(PMG)布置之间的磁悬浮力(PMG)布置,即哈巴氏和常规PMG(FC) )在37k和33k的温度下的条件。通过原位固态反应过程制造圆柱形块状MgB2超导体,直径为18mm,高度为5mm。 XRD数据表示良好的MGB2相位,在自场的30 k下获得JC值为68k / cm(2)。实验结果表明,由于更合适的磁场分布,Halbach PMG上方的MGB2体积可以在散装MGB2和PMG之间的所有冷却高度上表现出更好的负载能力。 Halbach PMG的最大悬浮力对应于16.86n,而常规PMG在37k的冷却高度为77mm时显示9.02n。另外,在CH增加时,最大悬浮力增加,因为助焊剂排除对于较大的CHS更有效。据认为,在研究中获得的实验结果是未来的磁悬浮应用非常有用,因为有对不同的二硼化镁,PMG安排MgB2超导散装的磁悬浮力研究数量有限。 (c)2020 Elsevier B.v.保留所有权利。

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