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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Test results of RD3c, a Nb/sub 3/Sn common-coil racetrack dipole magnet
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Test results of RD3c, a Nb/sub 3/Sn common-coil racetrack dipole magnet

机译:Nb / sub 3 / Sn共线圈赛道偶极磁体RD3c的测试结果

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The superconducting magnet group at Lawrence Berkeley National Laboratory has been developing racetrack coil technology for economical, high-field accelerator magnets from brittle superconductor. Recent tests have demonstrated 1) robust, reusable, double-layer, flat racetrack, wind and react Nb/sub 3/Sn coils, 2) a reusable, easily assembled coil-support structure that can minimize conductor movement and 3) nearly 15 T dipole fields, without conductor degradation. RD3c was our first attempt to compare measured and calculated field harmonics. A single-layer, Nb/sub 3/Sn, flat racetrack inner-coil was wound on both sides of a bore-plate and reacted and encapsulated (as before in RD3b). Hard coil-spacers were wound into the inner coils to adjust the geometric field harmonics and identify any problems from hard-spacers. The resulting insert coil-module was sandwiched between existing outer-coil modules, and pre-stressed within the previous yoke and shell structure. The bore-plate was thick enough to protect the rotating coil and its anti-cryostat from this pre-stress. Magnet training started at 77% of the un-degraded short-sample current, and progressed in 15 quenches to 92%, high enough to make realistic, saturated iron magnetic measurements. Although there was considerable training, the multipole dependencies correlated well with calculations. A sub-set of the tests are reported and discussed.
机译:劳伦斯·伯克利国家实验室(Lawrence Berkeley National Laboratory)的超导磁体小组一直在开发赛道线圈技术,用于生产来自脆性超导体的经济型高场加速器磁体。最近的测试表明:1)坚固,可重复使用的双层扁平跑道,可缠绕和反应Nb / sub 3 / Sn线圈; 2)可重复使用且易于组装的线圈支撑结构,可最大程度地减少导体的移动; 3)将近15 T偶极子场,导体不会退化。 RD3c是我们比较测量和计算出的场谐波的首次尝试。将单层Nb / sub 3 / Sn扁平跑道内线圈缠绕在孔板的两侧,进行反应和封装(与RD3b中一样)。硬线圈垫片被缠绕在内线圈中,以调节几何场谐波,并确定硬垫片的任何问题。所得的插入式线圈模块被夹在现有的外部线圈模块之间,并在先前的磁轭和外壳结构中受到预应力。孔板的厚度足以保护旋转线圈及其防冻液免受此预应力的影响。磁铁的训练开始于未退化的短采样电流的77%,然后经过15次淬火,达到92%,足够高以进行逼真的饱和铁磁测量。尽管进行了大量培训,但多极相关性与计算之间的相关性很好。报告并讨论了测试的子集。

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