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Stability measurements on cored cables in normal and superfluid helium

机译:正常和超流体氦气中有芯电缆的稳定性测量

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摘要

The relative stability of LHC type cables has been measured by the direct heating of one of the individual strands with a short duration current pulse. The minimum energy required to initiate a quench has been determined for a number of cables which have a central core to increase the effective inter-strand cross-over resistance. Experiments were performed in both normal helium at 4.4 K and superfluid at 1.9 K. Conductors in general are less stable at the lower temperature when measured at the same fraction of critical current. Results show that the cored-cables, even when partially filled with solder or with a 'porous-metal' filler exhibit a relatively low stability at currents close to the critical current. It is speculated that the high inter-strand electrical and thermal resistance inherent in these cables may affect the stability at high currents. (C) 1998 Elsevier Science B.V. All rights reserved. [References: 9]
机译:LHC型电缆的相对稳定性已通过使用短时电流脉冲直接加热单个绞合线之一来进行测量。对于许多具有中心芯线以增加有效的跨股交叉电阻的电缆,已经确定了引发失超所需的最小能量。实验是在4.4 K的正常氦气和1.9 K的超流体中进行的。当在相同临界电流分数下测量时,导体在较低温度下的稳定性一般较低。结果表明,即使在部分填充焊料或“多孔金属”填充剂的情况下,有芯电缆在接近临界电流的电流下也表现出相对较低的稳定性。据推测,这些电缆固有的高股间电阻和热阻可能会影响大电流下的稳定性。 (C)1998 Elsevier Science B.V.保留所有权利。 [参考:9]

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