首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Interstrand Contact Resistance and Magnetization of ${hbox {Nb}}_{3}{hbox {Sn}}$ Rutherford Cables With Cores of Different Materials and Widths
【24h】

Interstrand Contact Resistance and Magnetization of ${hbox {Nb}}_{3}{hbox {Sn}}$ Rutherford Cables With Cores of Different Materials and Widths

机译:具有不同材料和宽度的芯的$ {hbox {Nb}} _ {3} {hbox {Sn}} $ Rutherford电缆的线间接触电阻和磁化强度

获取原文
获取原文并翻译 | 示例

摘要

Rutherford cables with cores of E-glass and S-glass woven tape and types AISI-316 and AISI-304 stainless steel (SS) ribbon were subjected to calorimetric AC loss measurement in transverse magnetic fields of amplitude 400 mT and frequencies of up to 90 mHz applied in the face-on (FO) and edge-on (EO) orientations. The results yielded the effective interstrand contact resistances (ICR), $R_{rm eff}$ (to be defined), and corresponding estimates of the FO coupling magnetizations generated by fields ramping at the LHC-specified 6.5 mT/s. Detailed analysis of the results indicated: 1) a cable with a full-width 316-SS core and a satisfactory $R_{rm eff}$ value would be suitable for magnet winding; 2) a cable with an off-center partial-width core had a very low $R_{rm eff}$ and an excessively large coupling magnetization; 3) The cables with glass-tape cores although characterized by large $R_{rm eff}{rm s}$ and very small coupling magnetizations turned out to have mostly uncoupled strands with intermittent points of low resistance contact. In order to achieve the target ICR values, the level of glass insulation insert should be reduced and cable compaction adjusted.
机译:使用E-玻璃和S-玻璃编织带芯以及AISI-316和AISI-304不锈钢(SS)型带芯的Rutherford电缆在幅度为400 mT,频率最高为90的横向磁场中进行量热AC损耗测量面向面(FO)和沿面(EO)方向的mHz。结果得出有效的链间接触电阻(ICR),$ R_ {rm eff} $(待定义),以及由LHC指定的6.5 mT / s的磁场倾斜产生的FO耦合磁化强度的相应估计。对结果的详细分析表明:1)具有全宽度316-SS磁芯且具有令人满意的$ R_ {rm eff} $值的电缆将适合于磁体绕组; 2)具有偏心部分宽度芯线的电缆具有非常低的$ R_ {rm eff} $和过大的耦合磁化强度; 3)带有玻璃带芯的电缆虽然具有$ R_ {rm eff} {rm s} $的特点,但耦合磁化强度很小,但实际上却是大多数未耦合的绞合线,具有间歇性低电阻接触点。为了达到目标ICR值,应降低玻璃绝缘插入物的水平并调整电缆的紧实度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号