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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Measurements of temperature dependence of the stability and quench propagation of a 20-cm-long RABiTS Y-Ba-Cu-O tape
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Measurements of temperature dependence of the stability and quench propagation of a 20-cm-long RABiTS Y-Ba-Cu-O tape

机译:测量20厘米长的RABiTS Y-Ba-Cu-O胶带的稳定性和猝灭传播的温度依赖性

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摘要

Thermal stability and quench propagation in a composite tape made of YBa2Cu3Ox (YBCO) superconductor were studied experimentally. Quench propagation in each test was initiated by applying a sequence of a short overcurrent pulse followed by a longer pulse at a typical operating current for the tape. The resulting change in resistivity due to internal heating was measured through voltage taps across different zones of the tape. Measurements were performed as a function of both initial overcurrent and operating current for several operating temperatures between 45 and 80 K. These experimental results provided the thermal stability margin, the minimum propagation current, and the quench propagation velocity for the tape. Experimentally obtained temperature dependence of normal zone propagation velocity was compared with the adiabatic theory taking into account minimum propagation current. It was noted that the measured normal zone propagation velocity compared favorably with the theory at each operating temperature.
机译:实验研究了YBa2Cu3Ox(YBCO)超导体制成的复合带的热稳定性和淬火传播。在每个测试中,通过在磁带的典型工作电流下施加短的过电流脉冲,然后施加更长的脉冲来启动猝灭传播。通过带的不同区域上的电压抽头来测量由于内部加热而导致的电阻率变化。在45至80 K之间的几个工作温度下,测量值是初始过电流和工作电流的函数。这些实验结果提供了磁带的热稳定性裕度,最小传播电流和失超传播速度。考虑到最小传播电流,将实验获得的正常区域传播速度的温度依赖性与绝热理论进行了比较。值得注意的是,在每个工作温度下,测得的正常区域传播速度均优于理论值。

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