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Characterization of the electrical resistance of high temperature superconductor coated conductors at high currents using ultra-fast regulated current pulses

机译:使用超快速调节电流脉冲表征高电流下高温超导体涂层导体的电阻

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This paper focuses on the experimental determination of the electrical resistance (R) of commercial high temperature superconductor (HTS) coated conductors (CCs) at currents well above the critical current. The major novelty of this work rests on the unique experimental capability of applying constant current pulses in the sample (up to 1000 A) for durations as short as 15 mu s, which allows very precise control of the amount of energy dissipated in the sample (the Joule effect), as well as the resulting temperature rise. By varying the applied current and the duration of the pulses, we show that we can achieve a relatively accurate characterization of R(I, T) simply from the measured dynamical V-I characteristics of the CCs. The resistance model obtained in this way is very important, as R(I, T) is the most fundamental design parameter in many practical HTS applications, especially in fault current limiters.
机译:本文着重在远高于临界电流的电流下对商用高温超导体(HTS)涂层导体(CC)的电阻(R)的实验确定。这项工作的主要新颖之处在于独特的实验能力,即在样品中施加恒定电流脉冲(最高1000 A),持续时间短至15 s s,从而可以非常精确地控制样品中的能量耗散量(焦耳效应),以及由此引起的温度升高。通过改变施加的电流和脉冲的持续时间,我们表明,仅根据CC的动态V-I特性,就可以相对准确地表征R(I,T)。以这种方式获得的电阻模型非常重要,因为在许多实际的HTS应用中,尤其是在故障电流限制器中,R(I,T)是最基本的设计参数。

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