CERN Accelerating science

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1.
Training Curves of Nb$_3$Sn Rutherford Cables With a Wide Range of Impregnation Materials Measured in the BOX Facility / Otten, S. (Twente U., Enschede) ; Kario, A. (Twente U., Enschede) ; Wessel, W.A. J. (Twente U., Enschede) ; Leferink, J. (Twente U., Enschede) ; ten Kate, H.H.J. (Twente U., Enschede) ; Daly, M. (PSI, Villigen) ; Hug, C. (PSI, Villigen) ; Sidorov, S. (PSI, Villigen) ; Brem, A. (PSI, Villigen) ; Auchmann, B. (PSI, Villigen ; CERN) et al.
Training of accelerator magnets is a costly and time consuming process. The number of training quenches must therefore be reduced to a minimum. [...]
arXiv:2211.10213.- 2023-08 - 5 p. - Published in : IEEE Trans. Appl. Supercond. 33 (2023) 4003605 Fulltext: 2211.10213 - PDF; Publication - PDF;
In : Applied Superconductivity Conference, Honolulu, Hawaii, United States, 23 - 28 Oct 2022, pp.4003605
2.
Effect of resin impregnation on the transverse pressure dependence of the critical current in ReBCO Roebel cables / Gao, P (Twente U., Enschede ; Southwest Jiaotong U.) ; Wessel, W A J (Twente U., Enschede) ; Dhallé, M (Twente U., Enschede) ; Otten, S (KIT, Karlsruhe) ; Kario, A (KIT, Karlsruhe) ; Van Nugteren, J (Twente U., Enschede ; CERN) ; Kirby, G (CERN) ; Bottura, L (CERN) ; ten Kate, H H J (CERN ; Twente U., Enschede)
ReBCO Roebel cables are being developed as one of the promising routes towards much higher-field magnets for future particle accelerators. The Lorentz forces generated in such magnets lead to sizeable transverse pressure on the superconducting cables, in the present 15–20 T magnet designs of the order of 100–150 MPa. [...]
2019 - 9 p. - Published in : Supercond. Sci. Technol. 32 (2019) 055006
3.
Normal zone propagation in high-current density Nb$_{3}$Sn conductors for accelerator magnets / den Ouden, A ; Van Weeren, H ; Wessel, W A J ; ten Kate, H H J ; Kirby, G A ; Siegel, N ; Taylor, T
2004 - 4 p. - Published in : IEEE Trans. Appl. Supercond. 14 (2004) 279-282 IEEE Published version, local copy: PDF;
In : 18th International Conference on Magnet Technology, Morioka, Japan, 20 - 24 Oct 2003, pp.279-282
4.
Progress in the development of an 88-mm bore 10 T $Nb_{3}$Sn dipole magnet / den Ouden, A ; Wessel, W A J ; Kirby, G A ; Taylor, T ; Siegel, N ; ten Kate, H H J
A 10 T, 2-layer cos( theta )-dipole model magnet with an 88 mm clear bore utilizing an advanced powder-in-tube Nb/sub 3/Sn conductor is being developed for the LHC. A dedicated conductor development program has resulted in a well performing Rutherford cable containing strands that uniquely exhibit both an overall current density of 600 A/mm/sup 2/ @ 11 T and filaments with a diameter of 20 mu m. [...]
2001 - Published in : IEEE Trans. Appl. Supercond. 11 (2001) 2268-71
5.
Powder-in-tube (PIT) Nb$_{3}$Sn conductors for high-field magnets / Lindenhovius, J L H ; Hornsveld, E M ; den Ouden, A ; Wessel, W A J ; ten Kate, H H J
New Nb/sub 3/Sn conductors, based on the powder-in-tube (PIT) process, have been developed for application in accelerator magnets and high-field solenoids. For application in accelerator magnets, SMI has developed a binary 504 filament PIT conductor by optimizing the manufacturing process and adjustment of the conductor lay-out. [...]
2000 - Published in : IEEE Trans. Appl. Supercond. 10 (2000) 975-8

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