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Design, analyses, fabrication and characterization of Nb3Sn coil in 1 W pulse tube cryocooler

机译:1 W脉冲管冷冻机中NB3SN线圈的设计,分析,制造与表征

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A laboratory scale Nb3Sn coil is designed, analysed, fabricated and characterized in 1 W pulse tube cryocooler in solid nitrogen cooling mode and in conduction cooling mode. The magnetic field profile in axial and radial direction, Lorentz force component across the winding volume in operational condition are estimated in COMSOL. The coil is designed for 1.5 T at 100 A. It is fabricated in wind and react method. Before winding, the insulated Nb3Sn strand is wound on a copper mandrel which is thermally anchored with the 2nd stage of the cold head unit via a 10 mm thick copper 'Z' shaped plate The temperature distribution in 2nd cold stage, copper z plate and coil is monitored in both solid nitrogen cooling and conduction cooling mode. In solid nitrogen cooling mode, the quench of the coil occurs at 150 A for 0.01 A/s current ramp rate. The magnetic field at the centre of the coil bore is measured using transverse Hall sensor. The measured magnetic field value is compared with the analytical field value and they are found to be deviating ~5% in magnitude. Again the coil is tested in conduction cooling mode maintaining the same current ramp rate and it is observed that the coil gets quenched at 70 A at temperature ~ 10K.
机译:设计,分析,制造和以固体氮气冷却模式和传导冷却模式设计,分析,制造,制造和以传导冷却模式设计。在轴向和径向方向上的磁场轮廓在操作条件下横跨绕组体积的Lorentz力分量估计在COMSOL中。线圈设计为1.5吨,它以风和反应法制造。在绕组之前,绝缘Nb3sn股线缠绕在铜心轴上,通过10mm厚的铜'z'形板与冷头单元的第二级热锚定,第二冷级,铜z板和线圈中的温度分布在固体氮气冷却和传导冷却模式下监测。在固体氮冷却模式中,线圈的淬火发生在150A的速率为0.01A / s电流坡道速率。使用横向霍尔传感器测量线圈孔的中心的磁场。将测量的磁场值与分析场值进行比较,并且发现它们偏离〜5%。同样,线圈在传导冷却模式下测试,保持相同的电流斜坡率,并且观察到线圈在温度〜10k处在70a处淬灭。

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