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Design, fabrication and test of the react and wind, Nb3Sn, LDXfloating coil

机译:反应和风,Nb3Sn,LDX浮动线圈的设计,制造和测试

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The Levitated Dipole Experiment (LDX) is an innovative approach to explore the magnetic confinement of fusion plasma. A superconducting solenoid (floating coil) is magnetically levitated for up to 8 hours in the center of a 5-meter diameter vacuum vessel. The floating coil maximum field is 5.3 T, and a react-and-wind Nb3Sn conductor was selected to enable continued field production as the coil warms from 5 K during the experiment up to a final temperature of about 10 K. The coil is wound using an 18-strand Rutherford cable soldered into a half-hard copper channel, and is self protected during quench. The coil is insulated during winding and then vacuum impregnated with epoxy. The impregnated coil is tested with 2 kA operating current at 4.2 K, and then a single, low resistance joint is formed at the outer diameter of the coil before the coil is enclosed in its toroidal helium vessel. This paper presents details of the coil design and manufacturing procedures, with special attention to the techniques used to protect the coil from excessive strain damage throughout the manufacturing process
机译:悬浮偶极子实验(LDX)是探索聚变等离子体的磁约束的创新方法。超导螺线管(浮动线圈)在直径5米的真空容器中心磁悬浮达8个小时。浮动线圈的最大磁场为5.3 T,并且选择了反应和风Nb3Sn导体,以使线圈在实验过程中从5 K升温到最终温度约10 K时能够连续产生磁场。将18股Rutherford电缆焊接到半硬的铜通道中,并在淬火过程中进行自我保护。线圈在缠绕过程中绝缘,然后用环氧树脂真空浸渍。在2 kA的工作电流下以4.2 K测试浸渍的线圈,然后在将线圈封闭在其环形氦容器中之前,在线圈的外径处形成一个低电阻接头。本文介绍了线圈设计和制造过程的详细信息,并特别注意了在整个制造过程中用于保护线圈免受过度应变破坏的技术

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