DocumentCode :
1067438
Title :
The LHC pre-series dipole cold mass geometry
Author :
Bajko, M. ; Chamizo, R. ; Savary, F. ; Skoczen, B. ; Veness, R. ; Jeanneret, J.B.
Author_Institution :
CERN, Geneva, Switzerland
Volume :
14
Issue :
2
fYear :
2004
fDate :
6/1/2004 12:00:00 AM
Firstpage :
215
Lastpage :
218
Abstract :
In order to provide the necessary mechanical aperture for the LHC beam, the main dipole cold masses have to match precisely the nominal circular trajectory of the particles beam. The requirements on the dipole cold mass geometry are dictated by the LHC beam optics and by the allowed limits of mechanical deformation of the interconnection bellows. Keeping the tight tolerances that are imposed necessitates a well controlled bending process and the use of a high accuracy 3D measuring instrument for checking the geometry of the cold mass throughout many manufacturing stages up to the final inspection. The dipole cold mass pre-series production started in 2000. It is almost completed at the three sites. In this paper, we report on the problems encountered to shape correctly the cold masses, their effect on interconnection of the dipole cold masses and on the mechanical aperture. On one side measures to improve the production process in terms of accuracy and reproducibility were taken, on the other side the assembly tolerances could be relaxed following a thorough review of the machine requirements. The summary of the encountered problems, corrective actions and results obtained on the pre-series cold masses are presented and discussed.
Keywords :
manufacturing processes; production engineering; superconducting magnets; AD 2000; LHC beam optics; LHC preseries dipole cold mass geometry; Large Hadron Collider; assembly tolerance; dipole cold mass interconnection; dipole cold mass preseries production; interconnection bellows; machine requirements; main dipole cold mass; mechanical aperture; mechanical deformation; particles beam circular trajectory; production process; Apertures; Bellows; Geometrical optics; Geometry; Large Hadron Collider; Optical beams; Optical interconnections; Particle beams; Process control; Weight control; Alignment; LHC; cold mass; dipole; geometry;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2004.829050
Filename :
1324774
Link To Document :
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