首页> 外文期刊>IEEE Transactions on Applied Superconductivity >This paper presents a summary of the design, construction and test results of a common coil dipole DCC017 made using ldquoreact & windrdquo Nb3Sn technology. It reached the computed short sample field of 10.2 T at 10.8 kA after a number of
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This paper presents a summary of the design, construction and test results of a common coil dipole DCC017 made using ldquoreact & windrdquo Nb3Sn technology. It reached the computed short sample field of 10.2 T at 10.8 kA after a number of

机译:本文总结了使用ldquoreact&windrdquo Nb3Sn技术制成的普通线圈偶极子DCC017的设计,构造和测试结果。经过一定数量的测量后,它在10.8 kA处达到了计算得出的10.2 T短样品场。

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This paper presents a summary of the design, construction and test results of a common coil dipole DCC017 made using ldquoreact & windrdquo Nb3Sn technology. It reached the computed short sample field of 10.2 T at 10.8 kA after a number of quenches. In order to build high field magnets with brittle pre-reacted superconductors one must develop magnet designs, tooling and construction techniques that keep conductor degradation due to bending and handling to a tolerable level. The successful construction and test of this magnet demonstrates that it is possible to design and build magnets in the 10 (plus) T range using ldquoreact & windrdquo technology. The magnet is based on a 2-layer common coil design with a clear horizontal space of 31 mm. A unique feature of the design is a tall 338 mm clear vertical open space that can facilitate possible flat racetrack coil testing in a high background field without dis-assembling the magnet.
机译:本文总结了使用ldquoreact&windrdquo Nb3Sn技术制成的普通线圈偶极子DCC017的设计,构造和测试结果。经过多次淬火后,它在10.8 kA处达到了计算得出的10.2 T短样品场。为了用易碎的预反应超导体制造高磁场磁体,必须开发一种磁体设计,工具和构造技术,以使导体由于弯曲和处理而退化的程度保持在可容忍的水平。该磁体的成功构建和测试表明,可以使用ldquoreact&windrdquo技术设计和制造10(加)T范围的磁体。磁体基于2层通用线圈设计,具有31 mm的净水平空间。该设计的独特之处在于高338毫米的净垂直开放空间,可在不拆卸磁体的情况下,在高背景场中方便进行平坦的赛道线圈测试。

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