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Quench Propagation Characteristics of the Liquid Nitrogen Cooled HTS Wires by Externally Injected Heat Energy

机译:外部注入热能对液氮冷却的高温超导丝的淬火扩展特性

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With the successful commercialization of Bi-2223 powder-in-tube wire, many attempts to the R & D of the high-$T_c$superconducting (HTS) magnets for high magnetic field applications are now being implemented actively. Although operating temperature of HTS magnet must be kept in the designed level, the magnetic energy and mechanical disturbance can make the operational temperature of HTS magnet unstable. Especially, generated heat energy of inner HTS winding is apt to accumulate, so the normal region appears in HTS winding. This paper deals with the quenching characteristic of reinforced Bi-2223 wire and two bare Bi-2223 wires in adiabatic condition. The minimum quench energy (MQE) of HTS wires was affected by the material and ratio of their matrix. In the same condition, the normal zone propagation (NZP) energy of nonreinforced HTS wire was smaller than that of reinforced HTS wire.
机译:随着Bi-2223管中粉末的成功商业化,目前正在积极地进行研发用于高磁场应用的高T $ c $超导(HTS)磁体的许多尝试。尽管HTS磁体的工作温度必须保持在设计水平,但是磁能和机械干扰会使HTS磁体的工作温度不稳定。特别是内部高温超导绕组产生的热能易于积累,因此正常区域出现在高温超导绕组中。本文研究了在绝热条件下增强的Bi-2223钢丝和两根裸Bi-2223钢丝的淬火特性。 HTS焊丝的最小淬火能(MQE)受其材料和基体比例的影响。在相同条件下,非增强HTS钢丝的正常区域传播能量(NZP)小于增强HTS钢丝的正常区域传播能量。

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