DocumentCode :
917659
Title :
A Model Dipole for FAIR SIS300: Design of the Mechanical Structure
Author :
Farinon, Stefania ; Fabbricatore, Pasquale ; Musenich, Riccardo ; Alessandria, Franco ; Bellomo, Giovanni ; Sorbi, Massimo ; Volpini, Giovanni ; Gambardella, Umberto ; Marabotto, Roberto
Author_Institution :
INFN-Sezione di Genova, Genoa, Italy
Volume :
19
Issue :
3
fYear :
2009
fDate :
6/1/2009 12:00:00 AM
Firstpage :
1141
Lastpage :
1145
Abstract :
Design activities coupled with conductor R&D and model coil construction are under way for developing a curved fast cycled superconducting dipole suitable for operations of the SIS300 synchrotron at FAIR. The main target is the construction within 2009 of a model magnet (cold mass fully integrated in a horizontal cryostat). This magnet is designed for generating 4.5 T magnetic field in a bore of 100 mm, able to be operated at a field rate of 1 T/s. The magnetic length is 3.8 m with a curvature radius of 66.67 m (the sagitta is 27 mm). The mechanical structure is based on 3 mm thick laminated stainless steel collars, assembled through keys, and 1 mm thick iron yoke laminations, assembled through large Al alloy C-shaped clamps. A 2D finite element analysis has been performed to evaluate stresses and deformations coming out during assembly, cool-down and energization. Particular emphasis has been given to the possible fatigue problems ensuing from the large operating field rate over a large lifetime cycle number, 107. Numerical results are presented and discussed.
Keywords :
aluminium alloys; clamps; deformation; fatigue; finite element analysis; laminations; mechanical strength; stainless steel; superconducting coils; superconducting magnets; 2D finite element analysis; C-shaped clamps; FAIR SIS300; FeCrNiCJk; R&D; SIS300 synchrotron; cool-down; curved fast cycled superconducting dipole; deformations; fatigue; laminated stainless steel collars; magnetic field; magnetic length; mechanical structure; numerical analysis; size 100 mm; size 3 mm; size 3.8 m; size 66.67 m; superconducting coils; thick iron yoke laminations; Collars; finite element analysis; mechanical structure; pulsed dipole;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2009.2017944
Filename :
4982602
Link To Document :
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