• DocumentCode
    1476225
  • Title

    Quench Performance of HQ01, a 120 mm Bore LARP Quadrupole for the LHC Upgrade

  • Author

    Marchevsky, M. ; Ambrosio, G. ; Bingham, B. ; Bossert, R. ; Caspi, S. ; Cheng, D.W. ; Chlachidze, G. ; Dietderich, D. ; DiMarco, J. ; Felice, H. ; Ferracin, P. ; Ghosh, A. ; Hafalia, A.R. ; Joseph, J. ; Lizarazo, J. ; Sabbi, G.L. ; Schmalzle, J. ; Wandere

  • Author_Institution
    Lawrence Berkeley Nat. Lab., Berkeley, CA, USA
  • Volume
    22
  • Issue
    3
  • fYear
    2012
  • fDate
    6/1/2012 12:00:00 AM
  • Firstpage
    4702005
  • Lastpage
    4702005
  • Abstract
    We report quench test results for the 1-meter long, 120 mm aperture Nb3Sn quadrupole magnet, HQ01, designed, fabricated and tested for the LHC Accelerator Research Program (LARP). The magnet has a design gradient of 219 T/m at 1.9 K and peak field of ~15 T. Earlier tests (HQ01a, b) showed peak gradients of 152 T/m at 4.4 K but also revealed electrical insulation weaknesses that ultimately led to coil damage. Structural and electrical improvements incorporated into HQ01c magnet have assured and tracked the electrical integrity of the coils. The most recent HQ01d and HQ01e tests demonstrated gradients of 170 T/m at 4.4 K (86% of short sample critical current) with moderate training. By analyzing magnet voltage test data, quench propagation velocities and quench locations were determined. Most of the quenches tended to cluster around the pole region of the coils. Eight PC-board quench antennas were installed to better identify quench locations. We monitored longitudinal propagation of pole-turn quenches and correlated inductive responses of the quench antennas with magnet voltages. On down-ramps, the HQ magnet exhibited no quenches at rates up 150 A/s; the experimental ramp-rate dependence was analyzed using a simple `loss model´.
  • Keywords
    accelerator magnets; antennas; coils; critical currents; insulation; niobium alloys; quenching (thermal); superconducting magnets; tin alloys; HQ01 quench performance; HQ01c magnet; LHC Accelerator Research Program; LHC upgrade; Nb3Sn; PC-board quench antenna; bore LARP quadrupole; coil damage; coil electrical integrity; critical current; electrical insulation weakness; magnet voltage test data; pole-turn quench; quadrupole magnet; quench location; quench propagation velocity; quench test; temperature 1.9 K to 4.4 K; Antennas and propagation; Coils; Heating; Large Hadron Collider; Magnetic flux; Superconducting magnets; Training; HQ; LARP; niobium-tin; superconducting accelerator magnets;
  • fLanguage
    English
  • Journal_Title
    Applied Superconductivity, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1051-8223
  • Type

    jour

  • DOI
    10.1109/TASC.2012.2185671
  • Filename
    6172652