...
首页> 外文期刊>Superconductor Science & Technology >Combination of high hoop stress tolerance and a small screening current-induced field for an advanced Bi-2223 conductor coil at 4.2K in an external field
【24h】

Combination of high hoop stress tolerance and a small screening current-induced field for an advanced Bi-2223 conductor coil at 4.2K in an external field

机译:高环向应力耐受力和小屏蔽电流感应场的结合,用于外部磁场中4.2K时的先进Bi-2223导体线圈

获取原文
获取原文并翻译 | 示例

摘要

An advanced Bi-2223 conductor with Ni-Cr reinforcement is a likely candidate to achieve a compact super-high field nuclear magnetic resonance (NMR) magnet capable of operation beyond 1 GHz (23.5 T). However, the conductors must show both high hoop stress tolerance, typically >300 MPa, and a small screening current-induced magnetic field, both of which are essential for a compact magnet generating a highly accurate field. These two conditions have not yet been demonstrated in a working coil. This is the first paper to systematically investigate both characteristics for a layer-wound coil made with the advanced Bi-2223 conductor operated mainly at 4.2 K in an external field of <= 17 T. The coil tolerated a hoop stress of 370 MPa, even though the conductor had a bending strain corresponding to a diameter of 120 mm. On the other hand, the coil showed a notable screening current-induced field in a low external field, which may be explained by weak-link and direct contacts between highly packed Bi-2223 filaments in the silver matrix. The field sharply decreased with increasing external field between 0-1 T. Thus, the conductor should be useful for inner coils in compact super-high field NMR magnets.
机译:具有Ni-Cr增强功能的先进Bi-2223导体很可能会成为一种紧凑的超高磁场核磁共振(NMR)磁体,其工作频率可超过1 GHz(23.5 T)。但是,导体必须同时具有较高的环向应力容限(通常> 300 MPa)和较小的屏蔽电流感应磁场,这两者对于产生高精度磁场的紧凑型磁体都是必不可少的。这两个条件尚未在工作线圈中得到证明。这是第一篇系统地研究用先进的Bi-2223导体制成的绕线线圈的两种特性的方法,该绕线线圈主要在<= 17 T的外场中工作于4.2K。该线圈甚至可以承受370 MPa的环向应力。尽管导体具有对应于120mm直径的弯曲应变。另一方面,线圈在低外部磁场中显示出显着的屏蔽电流感应场,这可以用银基质中高度堆积的Bi-2223灯丝之间的弱连接和直接接触来解释。磁场随着0-1 T之间的外部磁场的增加而急剧减小。因此,该导体应可用于紧凑型超高磁场NMR磁体中的内部线圈。

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