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1.
The Bundle-Barrier PIT Wire Developed for the HiLumi LHC Project / Bordini, Bernardo (CERN) ; Ballarino, Amalia (CERN) ; Macchini, Matteo (CERN) ; Richter, David (CERN) ; Sailer, Bernd (Bruker EAS GmbH, Hanau) ; Thoener, Manfred (Bruker EAS GmbH, Hanau) ; Schlenga, Klaus (Bruker EAS GmbH, Hanau)
Abstract: For the HiLumi Large Hadron Collider Project, CERN is developing dipole and quadrupole magnets based on state-of-the-art high-Jc Nb$_{3}$Sn wires that are expected to operate at 1.9 K and at fields larger than 11 T. Two different types of Nb$_{3}$Sn wires are considered for the project: the powder in tube (PIT) and the restacked rod process conductors manufactured, respectively, by Bruker-EAS and Oxford superconducting technology. [...]
2017 - 6 p. - Published in : IEEE Trans. Appl. Supercond. 27 (2017) 6000706
In : Applied Superconductivity Conference, Denver, CO, USA, 4 - 9 Sep 2016, pp.6000706
2.
Evaluation of critical current density and residual resistance ratio limits in powder in tube Nb$_{3}$Sn conductors / Segal, Christopher (Natl. High Mag. Field Lab.) ; Tarantini, Chiara (Natl. High Mag. Field Lab.) ; Sung, Zu Hawn (Natl. High Mag. Field Lab.) ; Lee, Peter J (Natl. High Mag. Field Lab.) ; Sailer, Bernd (Heraeus, Hanau) ; Thoener, Manfred (Heraeus, Hanau) ; Schlenga, Klaud (Heraeus, Hanau) ; Ballarino, Amalia (CERN) ; Bottura, Luca (CERN) ; Bordini, Bernardo (CERN) et al.
High critical current density ( Jc) Nb$_{3}$Sn A15 multifilamentary wires require a large volume fraction of small grain (SG), superconducting A15 phase, as well as Cu stabilizer with high Residual Resistance Ratio (RRR) to provide electromagnetic stabilization and protection. In powder-in-tube (PIT) wires the unreacted Nb7.5 wt%Ta outer layer of the tubular filaments acts as a diffusion barrier and protects the interfilamentary Cu stabilizer from Sn contamination. [...]
CERN-ACC-2016-0340.- 2016 - 10. - Published in : Supercond. Sci. Technol. 29 (2016) 085003 Fulltext: PDF;

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