Kim S B, Kimoto T, Yano Y, Hahn S, Iwasa Y
Department of Electrical and Electronic Engineering, Okayama University, Okayama 700-8530, Japan.
Francis Bitter Magnet Laboratory at Massachusetts Institute of Technology, Cambridge, MA 02139 USA.
IEEE Trans Appl Supercond. 2012 Jun;22(3). doi: 10.1109/tasc.2011.2182170. Epub 2011 Dec 30.
In fabrication of a compact NMR (Nuclear Magnetic Resonance) magnet which consists of a stacked HTS (High Temperature Superconducting) bulk annuli, generally there are three key issues: spatial homogeneity, temporal stability, strength of trapped magnetic fields. This paper presents a study on the effects of axial gap length between stacked HTS bulks on the three key issues of a bulk HTS magnet for compact HTS NMR applications. The HTS bulk magnet of which the ID and OD are 20 and 60 mm respectively has a 50 and 80 mm heights depending on the axial gap lengths between HTS bulks. The gap length between each HTS bulk varied from 0 mm to 10 mm and were used as parameters to optimize, analytically as well as experimentally, the overall field homogeneity of the HTS bulk magnet. The optimized axial gap length was obtained by analytical results, and the better magnetic field homogeneity and temporal stability of trapped magnetic field were achieved by lower magnetization field. The improved spatial homogeneity and strength of generated magnetic field by a new compact NMR magnet will be presented.
在制造由堆叠的高温超导(HTS)块状环组成的紧凑型核磁共振(NMR)磁体时,通常存在三个关键问题:空间均匀性、时间稳定性、俘获磁场强度。本文研究了堆叠的高温超导块之间的轴向间隙长度对用于紧凑型高温超导核磁共振应用的块状高温超导磁体的这三个关键问题的影响。内径和外径分别为20毫米和60毫米的高温超导块状磁体,其高度根据高温超导块之间的轴向间隙长度分别为50毫米和80毫米。每个高温超导块之间的间隙长度从0毫米变化到10毫米,并用作参数,通过分析和实验来优化高温超导块状磁体的整体场均匀性。通过分析结果获得了优化的轴向间隙长度,并且通过较低的磁化场实现了俘获磁场更好的磁场均匀性和时间稳定性。将展示一种新型紧凑型核磁共振磁体所改善的空间均匀性和产生磁场的强度。