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Thermal and electromagnetic behavior in NbTi/CuNi superconducting wires under fast changing transport current

机译:NbTi / CuNi超导线在快速变化的传输电流下的热和电磁行为

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In superconducting wires with a CuNi matrix for A.C. use, normal transition is easily induced by various disturbances because CuNi matrix has a high electrical resistivity and a very low thermal conductivity. In A.C. use of superconductivity, we also need to know the thermal and the electromagnetic behavior during abrupt increase of transport current. We have investigated the influence of current diffusion during increase of transport current on quench current degradation in a few kinds of wires. To investigate the current diffusion during increase of transport current which has an effect upon quench current degradation in more detail, we prepared four types of sample wires with different cross-sectional geometry and different material of matrix. We measured the quench current of these wires as a function of current sweep rate with initial transport current and different cooling conditions as parameters. Experimental data are compared with analytical results by the finite element method taking the magnetic and the thermal diffusion in radial direction of wire cross-section into account. From these comparisons, the influence of conductor geometry, epoxy layer on the surface of the sample and initial transport current on current diffusion in radial direction of wire cross-section and on quench current degradation is discussed.
机译:在具有用于交流的CuNi基体的超导线中,由于CuNi基体具有高电阻率和非常低的热导率,因此容易受到各种干扰而引起正常转变。在交流电的超导使用中,我们还需要了解传输电流突然增加期间的热和电磁行为。我们已经研究了传输电流增加过程中电流扩散对几种导线失超电流退化的影响。为了更详细地研究传输电流增加期间的电流扩散,该电流扩散对淬灭电流的劣化有影响,我们准备了四种类型的样品线,它们的横截面几何形状和基质材料都不同。我们以初始传输电流和不同的冷却条件为参数,测量了这些导线的失超电流作为电流扫描速率的函数。考虑到导线横截面径向的磁扩散和热扩散,通过有限元方法将实验数据与分析结果进行比较。通过这些比较,讨论了导体几何形状,样品表面上的环氧层和初始传输电流对沿导线横截面径向方向上的电流扩散以及淬灭电流劣化的影响。

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