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Investigation of Magnetization Behavior of ${rm Nb}_{3}{rm Sn}$ Wires for the Next European Dipole (NED) Activity

机译:下一欧洲偶极(NED)活动的$ {rm Nb} _ {3} {rm Sn} $线的磁化行为研究

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In the frame of the conductor development for the Next European Dipole (NED), magnetization measurements are an important tool for understanding the capability of a conductor to transport current. The measurement of the magnetic momentum in parallel and transverse field gives direct information about the content of ${rm Nb}_{3}{rm Sn}$ as well as other superconducting phases and about the critical current density. A well known problem related to high current ${rm Nb}_{3}{rm Sn}$ conductors is the presence of magnetic instabilities at low field limiting the transport properties. Through magnetization measurements the phenomena at the basis of instabilities (flux-jumps) due to strand magnetization can be analysed and related to different mechanisms (large filament diameter, filament coupling, etc.). Looking at our results, we believe that also the presence of unreacted Nb is a source of instability. Herewith, we will present and discuss the magnetization measurements carried out on the first strands manufactured according to NED conductor specifications.
机译:在下一个欧洲偶极子(NED)导体开发的框架中,磁化测量是了解导体传输电流能力的重要工具。平行和横向磁场中动量的测量可以直接提供有关$ {rm Nb} _ {3} {rm Sn} $的含量以及其他超导相以及有关临界电流密度的信息。与高电流$ {rm Nb} _ {3} {rm Sn} $导体相关的一个众所周知的问题是在低磁场下存在磁不稳定,从而限制了传输性能。通过磁化测量,可以分析由于线束磁化而导致的基于不稳定性(磁通跳跃)的现象,并且该现象与不同的机理(大灯丝直径,灯丝耦合等)有关。查看我们的结果,我们认为未反应的Nb的存在也是不稳定的原因。因此,我们将介绍并讨论在根据NED导体规格制造的第一股绞线上进行的磁化强度测量。

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