磁铁
屏蔽电缆
电磁屏蔽
超导磁体
电磁线圈
核磁共振
同质性(统计学)
超导电性
磁场
材料科学
消磁场
超导导线
偶极磁铁
核工程
计算机科学
凝聚态物理
物理
磁化
电信
量子力学
机器学习
工程类
复合材料
作者
Yaohui Wang,Qiuliang Wang,Hui Wang,Shunzhong Chen,Xinning Hu,Yang Liu,Feng Liu
标识
DOI:10.1088/1361-6668/ac370e
摘要
Abstract Active shielding technology has been widely applied to the superconducting magnetic resonance imaging (MRI) and nuclear magnetic resonance (NMR) magnets design, revealing excellent performance on the stray field control. For such a highly homogeneous field superconducting magnet design, an appropriate optimization strategy is essential to guarantee the magnetic field homogeneity in the central region and the expected 5 Gauss line range, especially for the ultrahigh field superconducting magnet. Based on the compensating field optimization method, an actively-shielded whole-body 14 T MRI magnet and an actively-shielded 1.3 GHz NMR magnet were presented, and detailed analyses were conducted to evaluate the feasibility of the designs. The developed magnet design method, coil pattern, wire arrangement, and stress/strain adjustment will be used to guide the corresponding project implementation.
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