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1.
20 T dipoles and Bi-2212: the path to LHC energy upgrade / McIntyre, P.M. (Texas A-M) ; Damborsky, K. (Texas A-M) ; Holik, E.F. (Texas A-M) ; Lu, F. (Texas A-M) ; McInturff, A.D. (Texas A-M) ; Pogue, N. (Texas A-M) ; Sattarov, A. (Texas A-M) ; Sooby, E. (Texas A-M)
Increasing the energy of the LHC would require a ring of \sim20 T magnets using the superconductors Nb$_{3}$Sn and Bi-2212/Ag. The technology for Bi-2212/Ag wire, cable, and coil has advanced significantly but is still far short of the performance needed for such magnets. [...]
arXiv:1108.1640.- CERN, 2011 - 5 p. - Published in : 10.5170/CERN-2011-003.70 Preprint: PDF; Published version from CERN: PDF; External link: Preprint
In : EuCARD-AccNet-EuroLumi Workshop : The High-Energy Large Hadron Collider, pp.70-74
2.
Processing of Bi-2212 and Nb$_3$Sn studied in situ by high energy synchrotron diffraction and micro-tomography / Kadar, Julian
Next generation superconducting wires have been studied to obtain more information on the evolution of phase growth, crystallite size and strain state during wire processing [...]
CERN-THESIS-2012-206 - 96 p.

Fulltext
3.
Design, processing, and properties of Bi : 2212\/Ag Rutherford cables / Collings, E W ; Sumption, M D ; Scanlan, R M ; Dietderich, D R ; Motowidlo, L R ; Sokolowski, R S ; Aoki, Y ; Hasegawa, T
In a program intended to explore the use of high temperature superconducting (HTSC) cables in high field synchrotron dipole magnets model Bi:2212/Ag Rutherford cables were designed bearing in mind the needs for mechanical integrity, relatively high tensile strength, and low coupling losses. To satisfy these needs a core-type cable design was selected and a readily available heat-resistant core material acquired. [...]
1999
In : 11th International Symposium on Superconductivity, Fukuoka, Japan, 16 - 19 Nov 1998, pp.1369-1372
4.
Study of a Current-Based Quench Detection Method for CCT Magnets via a Co-Wound Superconducting Sensing Wire / Gao, Jiani (PSI, Villigen) ; Auchmann, Bernhard (CERN ; PSI, Villigen) ; Hug, Christoph (PSI, Villigen) ; Pautz, Andreas (PSI, Villigen ; ITS, Lausanne) ; Sanfilippo, Stephane (PSI, Villigen)
To respond to the needs of the future accelerators and the upgrade of existing machines, superconducting magnet technology is continuously evolving in the direction of high fields and high current densities. As a result, a fast and efficient quench detection becomes an essential part of the magnet design in order to safely release the stored magnetic energy during a quench. [...]
2021 - 5 p. - Published in : IEEE Trans. Appl. Supercond. 31 (2021) 4701105
5.
Characterization of Nb$_{3}$Sn Rutherford cables for the LHC 11-T Dipole Magnet / Wuis, A J (CERN ; Twente U., Enschede) ; Bordini, B (CERN) ; Ballarino, A (CERN) ; Oberli, L (CERN) ; Ten Kate, H H J (CERN ; Twente U., Enschede)
The so-called CERN-LHC DS upgrade relies on the use of 11 T dipole magnets. For these magnets 40 strands Nb$_{3}$Sn type Rutherford cables based on 0.7 mm wires are being developed. [...]
CERN-ACC-2014-0022.- Geneva : CERN, 2013 - 5 p. - Published in : IEEE Trans. Appl. Supercond. 24 (2013) 4003505 Fulltext: PDF;
In : 23rd International Conference on Magnet Technology, Boston, MA, USA, 14 - 19 Jul 2013, pp.4003505
6.
Unit 7 - Strands, cables and insulation / Todesco, Ezio (speaker) (CERN)
This unit belongs to the fourth part of the course, which is focussed on magnet design. We first discuss the lay out of the strand, and the technologies for Nb-Ti and Nb3Sn. [...]
2020 - 1:13:44. Masterclass - Superconducting Accelerator Magnets External link: Event details In : Unit 7 - Strands, cables and insulation
7.
Book cover Nb$_{3}$Sn accelerator magnets : designs, technologies and performance / Schoerling, Daniel (ed.) ; Zlobin, Alexander V (ed.)
This open access book is written by world-recognized experts in the fields of applied superconductivity and superconducting accelerator magnet technologies [...]
Cham : Springer, 2019. - 452 p.


ebook (Open Access)
8.
Low coupling loss core-strengthened Bi : 2212\/Ag Rutherford cables / Collings, E W ; Sumption, M D ; Scanlan, R M ; Dietderich, D R ; Motowidlo, L R
In a comprehensive "vertically integrated" program multifilamentary (MF) high temperature superconducting (HTSC) Bi:2212/Ag strand was fabricated using the powder-in-tube process and heat treated in oxygen by a modified standard $9 procedure. The reaction-heat-treatment (HT) was adjusted to maximize critical current (density), I/sub c/ (J /sub c/), as measured in various magnetic fields, B. [...]
1999 - Published in : IEEE Trans. Appl. Supercond. 9 (1999) 758-61
9.

CERN-PHOTO-201605-089
© 2016-2022 CERN
The first cable for the HL-LHC produced at CERN
A Rutherford cabling machine is operated in the su [...]
02-05-2016
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10.
Processing of Bi-2212 high temperature superconducting wires / Doerrer, Christopher
Bi-2212 high temperature superconductors can be used for producing very high magnetic fields [...]
CERN-THESIS-2015-477 - 84 p.

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