FNAL and CERN are performing an R&D program with the goal of developing a 5.5 m long twin-aperture 11 T Nb3hboxSn dipole suitable for installation in the Large Hadron Collider (LHC). An important part of the program is the development and test of a series of short single-aperture and twin-aperture models with a nominal field of 11 T at the LHC nominal current of 11.85 kA and 20% margin. This paper describes design and fabrication features, and test results of a 1 m long single-aperture Nb3hboxSn dipole model tested at FNAL.

Quench Performance of a 1 m Long Single-Aperture 11 T Nb3Sn Dipole Model for LHC Upgrades / A.V. Zlobin, N. Andreev, G. Apollinari, B. Auchmann, H. Bajas, E. Barzi, R. Bossert, G. Chlachidze, M. Karppinen, F. Nobrega, I. Novitski, L. Rossi, D. Smekens, D. Turrioni. - In: IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY. - ISSN 1051-8223. - 24:3(2014), pp. 6600946.1-6600946.5. [10.1109/TASC.2013.2281782]

Quench Performance of a 1 m Long Single-Aperture 11 T Nb3Sn Dipole Model for LHC Upgrades

L. Rossi;
2014

Abstract

FNAL and CERN are performing an R&D program with the goal of developing a 5.5 m long twin-aperture 11 T Nb3hboxSn dipole suitable for installation in the Large Hadron Collider (LHC). An important part of the program is the development and test of a series of short single-aperture and twin-aperture models with a nominal field of 11 T at the LHC nominal current of 11.85 kA and 20% margin. This paper describes design and fabrication features, and test results of a 1 m long single-aperture Nb3hboxSn dipole model tested at FNAL.
Accelerator magnets; Large Hadron Collider (LHC); magnet test; superconducting coils
Settore FIS/01 - Fisica Sperimentale
2014
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/663988
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