材料科学
电阻式触摸屏
电流密度
导电体
临界电流
芯(光纤)
电流(流体)
磁场
超导电性
复合材料
核磁共振
凝聚态物理
电气工程
量子力学
物理
工程类
作者
P Kováč,L Kopera,Dušan Berek,Miroslav Hain,T Melíšek,I Hušek,J Kováč,M Búran
标识
DOI:10.1088/1361-6668/ac8ad5
摘要
Abstract A Rutherford-type MgB 2 cable has been fabricated from 12 six-core strands prepared by an internal magnesium diffusion (IMD) process with a resistive CuNi30 outer sheath. The uniformity of individual strands of diameter 0.448 mm prior to and after additional densification by rolling was studied by x-ray micro-tomography. The engineering current densities of the cable samples were measured at 4.2 K and external magnetic fields between 4.0 T and 8.0 T and compared with available published data. The presented Rutherford cable has the highest engineering current density with J e = 10 4 A cm 2 measured in an external magnetic field of 5.73 T. The bending tolerance of the cable shows a critical diameter of 60 mm and less gradual critical current degradation in comparison to similar cables fabricated from single-core strands. The AC loss measurements of the present cable show lower coupling losses in comparison to monolithic multicore IMD conductors. The obtained results are promising for high-current-density and low-AC-loss MgB 2 superconducting cables that are suitable especially for motors and generators.
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