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Insert magnet and shim coils design for a 27 T nuclear magnetic resonance spectrometer with hybrid high and low temperature superconductors

机译:用混合高温和低温超导体插入磁铁和垫片线圈设计27 T核磁共振光谱仪

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An extremely-high field nuclear magnetic resonance (NMR) spectrometer has the potential to significantly augment the resolution and sensitivity of the atomic resonance spectrum, which will significantly boost the development of a range of scientific areas. The success of an extremely-high field NMR spectrometer depends to a great extent on the development of a superconducting magnet system. A high-temperature superconducting (HTS) insert magnet and low-temperature superconducting (LTS) shim coils design scheme for a 27 T NMR spectrometer is proposed in this work. A LTS background magnet was used to generate a 15 T magnetic field in the central area and the designed HTS insert magnet contributed the remaining 12 T magnetic field. The HTS insert magnet adopted notch double-pancake (DP) optimization to improve the rough magnetic field distribution in the central area to a highly-homogeneous level, and shim compensation schemes were proposed for the hybrid magnet to eliminate the inhomogeneous magnetic field components in the practical fabrication. The HTS insert magnet design had a current margin of 45.64% in terms of the perpendicular magnetic field intensity and the maximum hoop stress was reduced to 260 MPa with binding. There were in total eight shim coils, including two Nb3Sn zonal coils located between the insert magnet and the background magnet and six NbTi tesseral coils placed outside the background magnet. The magnet system will be fabricated in the near future.
机译:极高的现场核磁共振(NMR)光谱仪具有显着的显着增加原子共振谱的分辨率和敏感性,这将显着提高一系列科学领域的发展。极高场NMR光谱仪的成功取决于超导磁体系统的显影。在这项工作中提出了一种高温超导(HTS)插入磁体和低温超导(LTS)垫片线圈设计方案。使用LTS背景磁体在中心区域中产生15 T磁场,并且设计的HTS插入磁体贡献了剩余的12 T磁场。 HTS插入磁体采用凹口双煎饼(DP)优化,以改善中心区域的粗糙磁场分布到高度均匀的水平,并且提出了用于混合磁体的垫片补偿方案,以消除中间磁场成分实用的制造。在垂直磁场强度方面,HTS插入磁体设计具有45.64%的电流余量,并且最大箍应力降至260MPa,具有结合。共有八个垫圈,包括位于插入磁铁和背景磁铁之间的两个NB3SN区域线圈,并且六个NBTI陶线圈放置在背景磁体外。磁铁系统将在不久的将来制造。

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