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首页> 外文期刊>Journal of Applied Physics >Flux Jumping in Nb +25% Zr Wire
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Flux Jumping in Nb +25% Zr Wire

机译:助焊剂跳入Nb + 25%Zr线

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Flux jumping has been investigated in both cold‐worked and heat‐treated (1 h at 700°C) 0.025‐cm‐diam Nb+25% Zr wire wound into solenoids and noninductive coils of approximate dimensions: i.d.=0.3 cm, o.d.=1.2 cm, length=2.6 cm. The measurements taken at 4.2°K were: (1) The induced voltage pulses vs applied magnetic field with both I=0 and a preset transport current. (2) The induced voltage pulses vs coil current for H=0 and with a preset uniform external field. For the case with no transport current in the coil (I=0) when the external field was increased smoothly from zero, a squence of very sharp voltage pulses (flux jumps) were induced in the coil, and recorded simultaneously on both an X‐Y recorder and an oscilloscope. These flux jumps had the following general characteristics for all the cases discussed in this paper: (1) Starting from well defined initial conditions, the pulse always appeared at about the same place in the field sweeping cycle. (2) The polarity of the pulses is reversed when the direction of field change is reversed. (3) The pattern of these pulses was essentially unchanged when the field sweep rate was increased from 7 to 340 G/sec. As a result of these measurements, we have obtained new insight into both the multilevel transitions of noninductive coils and the phenomenon known as degradation of solenoids. Two successful methods are described for partially overcoming the excessive degradation of a solenoid made from heat treated wire. The flux jumps are interpreted according to an extension of a model proposed by both Bean and London.
机译:已在冷加工和热处理(在700°C下1 h)中对通量跳跃进行了研究,直径为0.025-cm-直径的Nb + 25%Zr线绕成螺线管和非感应线圈,其尺寸大致为:id = 0.3 cm,od = 1.2厘米,长度= 2.6厘米。在4.2°K下进行的测量为:(1)在I = 0和预设传输电流的情况下,感应电压脉冲与施加的磁场的关系。 (2)在H = 0且具有预设均匀外部磁场的情况下,感应电压脉冲与线圈电流的关系。对于在外部磁场从零平稳增加时线圈中没有传输电流(I = 0)的情况,线圈中会产生非常尖锐的电压脉冲(磁通跳跃),并同时记录在两个X- Y记录仪和示波器。对于本文讨论的所有情况,这些通量跳变具有以下一般特征:(1)从定义明确的初始条件开始,脉冲始终出现在磁场扫描周期的大约同一位置。 (2)当场变化方向反转时,脉冲的极性反转。 (3)当场扫描速率从7 G / sec增加到340 G / sec时,这些脉冲的模式基本不变。这些测量的结果,使我们对无感线圈的多级过渡和螺线管退化现象有了新的认识。描述了两种成功的方法,用于部分克服由热处理导线制成的螺线管的过度降解。根据Bean和London提出的模型的扩展来解释通量跳跃。

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    《Journal of Applied Physics 》 |1964年第3期| 共3页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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