插入(复合材料)
材料科学
磁铁
磁化
电流(流体)
核磁共振
超导磁体
凝聚态物理
磁共振成像
共振(粒子物理)
磁场
物理
复合材料
原子物理学
放射科
量子力学
热力学
医学
作者
Yi Li,Dong Keun Park,Yufan Yan,Yu-Mi Choi,Jiho Lee,Philip C. Michael,Siwei Chen,Timing Qu,Juan Bascuñán,Y. Iwasa
标识
DOI:10.1088/1361-6668/ab3119
摘要
The nonuniform superconducting current distribution in REBCO coated conductor, including a varying-field-induced screening current, is responsible for a significant magnetization effect that not only degrades the field quality of REBCO magnets, but also introduces risks of overstressing conductor. This paper presents our experimental and simulation studies on the screening current effect on an 800-MHz (18.8-T) REBCO insert (H800) that together with a 500-MHz LTS NMR magnet (L500) constitutes the MIT 1.3-GHz LTS/HTS NMR magnet (1.3G). To develop our simulation model, which subsequently validated by a good agreement between simulation and experiment, we chose H800, Coil 1 of the 3-coil assembly operated alone and the entire H800, for the sources of experimental data, specifically their remnant fields after current discharge and diminished axial fields during operation. Armed with this valid model, we examined in detail the negative effects of screening current on H800, an important 1.3G component. Our simulation indicates that the screening current, nonuniformly distributed in the REBCO conductor, not only deteriorates H800 field, both strength and homogeneity, thus that of 1.3G, but also may overstress the REBCO conductor.
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