CERN Accelerating science

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1.
Perspectives and recent achievements on additive manufacturing technologies for accelerators / Torims, Toms (Riga Tech. U.) ; Romano, Tobia (Milan, Polytech.) ; Pikurs, Guntis (Riga Tech. U.) ; Gruber, Samira (Fraunhofer Inst., Dresden) ; Delerue, Nicolas (IJCLab, Orsay) ; Lopez, Elena (Fraunhofer Inst., Dresden) ; Vretenar, Maurizio (CERN) ; Ratkus, Andris (Riga Tech. U.) ; Vedani, Maurizio (Milan, Polytech.) ; Marquardt, Drew (Fraunhofer Inst., Dresden) et al.
This paper reports the exploratory studies on advanced accelerator technologies performed within the I.FAST (Innovation Fostering in Accelerator Science and Technology) EU project, and in particular the key results of the additive manufacturing Task 10.2 – “Additive Manufacturing – applications and potential developments” and Task 10.3 – “Repair of damaged accelerator components by AM technologies”. This includes results of two surveys targeted to the accelerator community: a) on current additive manufacturing applications in accelerators and expected new developments, b) on current additive manufacturing repair technologies for accelerator and list of possible applications. [...]
2024 - 3 p. - Published in : JACoW IPAC 2024 (2024) THPS62 Fulltext: PDF;
In : 15th International Particle Accelerator Conference (IPAC 2024), Nashville, TN, United States, 19 - 24 May 2024, pp.THPS62
2.
Development of a Superconducting Magnet for a Compact Cyclotron for Radioisotope Production / Garcia-Tabares, Luis (Madrid, CIEMAT) ; Abramian, Pablo (Madrid, CIEMAT) ; Calero, Jesus (Madrid, CIEMAT) ; Gutierrez, Jose L (Madrid, CIEMAT) ; Munilla, Javier (Madrid, CIEMAT) ; Obradors, Diego (Madrid, CIEMAT) ; Perez, Jose M (Madrid, CIEMAT) ; Toral, Fernando (Madrid, CIEMAT) ; Iturbe, Rafael (ANTEC, S.A., Portugalete) ; Minguez, Leire (ANTEC, S.A., Portugalete) et al.
The present paper describes the development process of a low critical temperature superconducting magnet to be installed in a compact cyclotron producing single-dose radioisotopes for clinical and preclinical applications. After a brief description of the accelerator, the magnet development process is described, starting from the magnetic, mechanical, quench, and thermal calculations, continuing with the designing process, particularly the support structure of the magnet and the cryogenic supply system, to finish with the fabrication and the first tests than have been performed..
2016 - 4 p. - Published in : IEEE Trans. Appl. Supercond. 26 (2016) 4402004
In : 24th International Conference on Magnet Technology, Seoul, Korea, 18 - 23 Oct 2015, pp.4402004
3.
Development of a Superconducting Magnet for a Compact Cyclotron for Radioisotope Production / García-Tabarés, Luis (CIEMAT) ; Abramian, Pablo (CIEMAT) ; Calero, Jesús (CIEMAT) ; Gutiérrez, José L. (CIEMAT) ; Munilla, Javier (CIEMAT) ; Obradors, Diego (CIEMAT) ; Perez, Jose M. (CIEMAT) ; Toral, Fernando (CIEMAT) ; Iturbe, Rafael (ANTECSA) ; Mínguez, Leire (ANTECSA) et al.
CERN-ACC-NOTE-2017-0025.- Geneva : CERN, 2017 Fulltext: CERN-ACC-NOTE-2017-0025 - PDF; MT24-4OrCC-07.R3 - PDF;
4.
Education and Training Survey Report : Deliverable 5.1 / Kircher, F. (CEA, France) ; Nghiem, P. (CEA, France) ; Bailey, R. (CERN) ; Rinolfi, L. (CERN) ; M. Luisa Marco Arboli (CIEMAT, Spain) ; Susana Falcon (CIEMAT, Spain) ; Diego Obradors (CIEMAT, Spain) ; Clerc, C. (CNRS/IN2P3/LLR, France) ; Mueller, A. (CNRS/IN2P3/LLR, France) ; Rivkin, L. (EPFL, Switzerland) et al.
TIARA-REP-WP5-2012-006.- Geneva : CERN, 2012 Fulltext: PDF;

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