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Fluorescent thermal imaging of a non-insulated pancake coil wound from high temperature superconductor tape

机译:来自高温超导体卷绕的非绝缘薄煎饼线圈的荧光热成像

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摘要

We have wound a 157-turn, non-insulated pancake coil with an outer diameter of 85 mm and we cooled it down to 77 K with a combination of conduction and gas cooling. Using high-speed fluorescent thermal imaging in combination with electrical measurements we have investigated the coil under load, including various ramping tests and over-current experiments. We have found that the coil does not heat up measurably when being ramped to below its critical current. Two over-current experiments are presented, where in one case the coil recovered by itself and in another case a thermal runaway occurred. We have recorded heating in the bulk of the windings due to local defects, however the coil remained cryostable even during some over-critical conditions and heated only to about 82-85 K at certain positions. A thermal runaway was observed at the center, where the highest magnetic field and a resistive joint create a natural defect. The maximum temperature, similar to 100 K, was reached only in the few innermost windings around the coil former.
机译:我们卷绕了157圈的非绝缘煎饼线圈,外径为85毫米,我们将其冷却至77 k,结合导通和气体冷却。使用高速荧光热成像与电测量组合,我们已经研究了负载下的线圈,包括各种斜坡测试和过电流实验。我们已经发现,当在其临界电流下方倾斜时,线圈不会测量。提出了两个过电流实验,其中在一个情况下,线圈自身回收并且在另一种情况下发生热失控。由于局部缺陷,我们在大部分绕组中录制了加热,然而,即使在某些过度临界条件下,线圈也仍然低温,并且在某些位置仅加热到大约82-85 k。在中心观察到热失控,其中最高磁场和电阻接头产生自然缺陷。与100 k相似的最高温度仅在线圈成形器周围的少数最内绕组中达到。

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