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Influence of bending strain on transverse-field losses in NbTi multifilamentary superconducting wires with Cu matrix

机译:弯曲应变对Cu基NbTi复丝超导线材横向场损耗的影响

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To clarify the influence of the bending strain on transverse-field losses in NbTi multifilamentary superconducting wires with Cu matrix, we experimentally investigated AC loss characteristics of solenoidal sample coils with various curvatures. The total AC loss including the hysteresis loss and the coupling loss of sample coils was measured by the pickup coil method in an alternating transverse magnetic field with an amplitude of 1 T at 4.2 K in the frequency range between 0.01 Hz and 1 Hz. After the measured total loss was separated into the hysteresis loss and the coupling loss, each loss characteristics was studied. Measured data showed that the hysteresis loss was almost unchanged when the bending strain of the sample wire was within about 5%. On the other hand, the coupling loss decreased with an increase of the bending strain and the percentage of the decrease was about 15% when the bending strain was 5%. From the results of the conductivity measurement of Cut matrix, the decrease of coupling current loss due to the bending strain was quantitatively explained by the degradation of the conductivity of Cu matrix. In addition, the comparison between the experimental and theoretical results of the coupling time constant was discussed.
机译:为了弄清弯曲应变对含铜基体的NbTi多丝超导线材中横向电场损耗的影响,我们通过实验研究了不同曲率的螺线管样品线圈的交流损耗特性。通过拾波线圈方法,在0.01 Hz和1 Hz之间的频率范围内,在4.2 K时振幅为1 T的交变横向磁场中,通过采样线圈方法测量了包括滞后损耗和耦合损耗在内的总AC损耗。将测得的总损​​耗分为磁滞损耗和耦合损耗后,研究每种损耗特性。测量数据表明,当样品线的弯曲应变在5%左右时,磁滞损耗几乎没有变化。另一方面,当弯曲应变为5%时,耦合损耗随着弯曲应变的增加而降低,并且减少的百分比为约15%。根据Cut基体的电导率测量结果,可以通过Cu基体电导率的下降定量地解释由于弯曲应变引起的耦合电流损耗的减少。此外,还讨论了耦合时间常数的实验结果与理论结果之间的比较。

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