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AC loss and thermal runaway of 1 T cryocooler-cooled oxide superconducting pulsed coil

机译:1 T低温冷却器氧化物超导脉冲线圈的交流损耗和热失控

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We fabricated a 1 T cryocooler-cooled oxide superconducting pulsed coil. It is a 16-layer solenoidal coil wound with an interlayer-transposed 4-strand parallel conductor composed of Bi-2223 multifilamentary flat wires. The insulated strands were transposed only between layers to make all strands inductively equivalent. To suppress the temperature rise due to the AC loss, the aluminum nitride (AlN) plates were arranged between layers as heat drains. The pulsed coil was cooled down to 30 K by a single stage cryocooler. It can be operated continuously at 40 K in the 1 T triangular wave operation at 1 Hz. First we studied the temperature dependence of thermal runaway current of the coil under the application of direct transport current. The runaway current was higher than the critical current, which was defined as the current where the electric field of 10minus;4 V/m was generated on average over the whole length of the conductor. Next we studied the temperature variation of the coil in a sinusoidal operation of 1 Hz. The temperature increment was much more gradual than that in the DC operation. In this paper, we discuss the thermal properties of the cryocooler-cooled oxide superconducting pulsed coil, taking into account the heat generation of AC loss and flux-flow loss and the cooling capacity of a cryocooler.
机译:我们制造了一个1 T低温冷却器冷却的氧化物超导脉冲线圈。它是一个16层螺线管线圈,缠绕有由Bi-2223复丝扁线组成的层间转置4股平行导体。绝缘绞线仅在各层之间换位,以使所有绞线在电感上相等。为了抑制由于交流损耗引起的温度上升,将氮化铝(AlN)板布置在各层之间作为散热装置。通过单级低温冷却器将脉冲线圈冷却至30K。它可以以1 Hz的1 T三角波运行在40 K下连续运行。首先,我们研究了在直流输运电流作用下线圈热失控电流的温度依赖性。失控电流高于临界电流,该临界电流定义为在导体的整个长度上平均产生10负; 4 V / m的电场的电流。接下来,我们研究了在1 Hz的正弦运行中线圈的温度变化。温度增量比直流运行中的温度增量要缓慢得多。在本文中,我们考虑到AC损耗和磁通流量损耗的热量产生以及低温冷却器的冷却能力,讨论了低温冷却器冷却的氧化物超导脉冲线圈的热性能。

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