首页> 外文期刊>Technical physics >The Influence of Parameters of the Stabilizing Layer of 2G HTS Tapes and the Specifics of Heat Removal on the CVC Shape in the Resistive State and on the Critical Voltage Inducing Irreversible Changes in Superconducting Properties
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The Influence of Parameters of the Stabilizing Layer of 2G HTS Tapes and the Specifics of Heat Removal on the CVC Shape in the Resistive State and on the Critical Voltage Inducing Irreversible Changes in Superconducting Properties

机译:2G HTS胶带稳定层参数的影响及电阻状态下CVC形状的热移除细节及临界电压诱导超导特性的临界电压

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摘要

The actual form of the resistive section of the AC current-voltage curve (CVC) is determined experimentally. It is found that the CVC is shaped both by the electrical properties of the superconducting layer and by the thermomechanical properties of layers in the tape structure. The specific features of CVC behavior in different current ranges are determined. It is demonstrated that small amounts of heat released in stabilizing and superconducting layers do not affect the CVC shape below the critical current. Above the critical current, combined heat releases in stabilizing and superconducting layers raise the temperature and the resistance of an HTS tape in the resistive state. It is found that the stabilizing layer has a critical thickness. Below this critical level, the current in the resistive state flows primarily along the HTS layer, and its slight overheating initiates the transition of the sample to the normal state due to the thermal instability of heat removal to liquid nitrogen. In tapes with thicker copper layers, the current in the resistive state is distributed between stabilizing and HTS layers, and the transition to the normal state occurs near the critical temperature of the superconductor at zero current. The dependence of critical voltages characterizing different damage levels of HTS tapes on the thickness of the copper layer is determined. It is found that the breakdown occurs at higher voltages if step voltage is applied.
机译:通过实验确定AC电流电压曲线(CVC)的电阻部分的实际形式。发现CVC通过超导层的电性质和胶带结构中的层的热机械性能成形。确定了不同电流范围内CVC行为的具体特征。结果证明,稳定和超导层释放的少量热量不会影响低于临界电流的CVC形状。高于临界电流,稳定和超导层的组合热释放在电阻状态下提高HTS带的温度和电阻。发现稳定层具有临界厚度。低于该临界水平,电阻状态下的电流主要沿着HTS层流动,并且由于热除去对液氮的热不稳定性,其轻微过热引起样品的转变为正常状态。在具有较厚铜层的胶带中,电阻状态下的电流分布在稳定和HTS层之间,并且在零电流的超导体的临界温度附近发生到正常状态的过渡。确定临界电压表征不同损伤水平的HTS胶带厚度的依赖性。发现如果施加步进电压,则击穿在较高电压下发生故障。

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  • 来源
    《Technical physics》 |2018年第5期|共7页
  • 作者单位

    Russian Acad Sci Lebedev Phys Inst Moscow 119991 Russia;

    AO Grinatom Moscow 115230 Russia;

    OOO S Innovatsii Moscow 117246 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 Tb13;
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