Superconducting Magnet Testing for FAIR

被引:2
|
作者
Schnizer, Pierre [1 ]
Fischer, Egbert [1 ]
Mierau, Anna [1 ]
Sugita, Kei [1 ]
机构
[1] GSI Helmholtzzentrum Schwerionenforsch mbH, D-64291 Darmstadt, Germany
关键词
Electromagnetic measurements; rotating coil probes; superconducting magnets; testing; toroidal magnetic fields; ACCELERATOR MAGNETS; FIELDS;
D O I
10.1109/TASC.2013.2290229
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The Facility for Ion and Antiproton Reseach is now procuring the first series of magnets with the other series on the tendering process. The superconducting magnets will be tested at GSI or partner institutes. The fast ramped synchrotron SIS100 uses superferric dipoles with a beam aperture of 115 mm . 60 mm and a maximum field of 1.9 T at approximate to 13 kA with a ramp rate of 4 T/s and a continuous cycle frequency of up to 1 Hz. These magnets are built on the Nuclotron cable with NbTi wire. The superconducting fragment separator magnets are super-ferric, vvith an aperture of 220 mm . 80 mm for the dipole, a pole dip field of 1.6 T, use a NbTi NMR type wire, and operation currents of approximate to 300 A. In addition, R&D on SIS300 main magnets proceeds for the second project phase, requiring additional test preparation for the already built prototypes. The dipole magnets are 6-T cos theta magnets using a NbTi Rutherford cable. All these magnets must be tested at cold temperatures to prove their functionality and production accuracy. Different test facilities are currently set up and the test procedures are established. We report on the testing strategy and the progress of the test preparation.
引用
收藏
页数:4
相关论文
共 50 条
  • [1] Collaborative Simulation and Testing of the Superconducting Dipole Prototype Magnet for the FAIR Project
    朱银锋
    朱哲
    徐厚昌
    吴维越
    Plasma Science and Technology, 2012, 14 (08) : 765 - 770
  • [2] Collaborative Simulation and Testing of the Superconducting Dipole Prototype Magnet for the FAIR Project
    朱银锋
    朱哲
    徐厚昌
    吴维越
    Plasma Science and Technology, 2012, (08) : 765 - 770
  • [3] Collaborative Simulation and Testing of the Superconducting Dipole Prototype Magnet for the FAIR Project
    Zhu Yinfeng
    Zhu Zhe
    Xu Houchang
    Wu Weiyue
    PLASMA SCIENCE & TECHNOLOGY, 2012, 14 (08) : 765 - 770
  • [4] Superconducting dipole magnet for the CBM experiment at FAIR
    Kurilkin, P.
    Akishin, P.
    Bychkov, A.
    Floch, E.
    Gusakov, Yu.
    Ladygin, V.
    Malakhov, A.
    Moritz, G.
    Ramakers, H.
    Senger, P.
    Shabunov, A.
    Szwangruber, P.
    Toral, F.
    XXIII INTERNATIONAL BALDIN SEMINAR ON HIGH ENERGY PHYSICS PROBLEMS RELATIVISTIC NUCLEAR PHYSICS AND QUANTUM CHROMODYNAMICS (BALDIN ISHEPP XXIII), 2017, 138
  • [5] Testing of the Superconducting Magnets for the FAIR Project
    Mierau, Anna
    Schnizer, Pierre
    Fischer, Egbert
    Mueller, Hans
    Khodzhibagiyan, Hamlet
    Kostromin, Sergey
    Serio, Luigi
    Russenschuck, Stephan
    Dunkel, Olaf
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2016, 26 (04)
  • [6] ON THE TESTING OF LARGE SUPERCONDUCTING MAGNET SYSTEMS
    CHERNOPLEKOV, NA
    KIKNADZE, GI
    NENAROCHKIN, PV
    CRYOGENICS, 1983, 23 (03) : 168 - 169
  • [7] Development of Experimental Superconducting Magnet for the Collector Ring of FAIR Project
    朱银锋
    吴维越
    武松涛
    徐厚昌
    刘常乐
    Plasma Science and Technology, 2010, (02) : 248 - 252
  • [8] Quench calculations for the superconducting dipole magnet of CBM experiment at FAIR
    Kurilkin, P.
    Akishin, P.
    Bychkov, A.
    Floch, E.
    Gusakov, Yu
    Ladygin, V
    Malakhov, A.
    Moritz, G.
    Ramakers, H.
    Senger, P.
    Shabunov, A.
    Szwangruber, P.
    Toral, F.
    FAIRNESS 2016, 2016, 742
  • [9] Development of Experimental Superconducting Magnet for the Collector Ring of FAIR Project
    朱银锋
    吴维越
    武松涛
    徐厚昌
    刘常乐
    Plasma Science and Technology, 2010, 12 (02) : 248 - 252
  • [10] Development of Experimental Superconducting Magnet for the Collector Ring of FAIR Project
    Zhu Yinfeng
    Wu Weiyue
    Wu Songtao
    Xu Houchang
    Liu Changle
    PLASMA SCIENCE & TECHNOLOGY, 2010, 12 (02) : 248 - 252