DocumentCode :
377825
Title :
The interconnections of the LHC cryomagnets
Author :
Jacquemod, A. ; Poncet, A. ; Skoczen, B. ; Tock, J. Ph
Author_Institution :
CERN, Geneva, Switzerland
Volume :
1
fYear :
2001
fDate :
2001
Firstpage :
616
Abstract :
The main components of the LHC, the next world-class facility in high-energy physics, are the twin-aperture high-field superconducting cryomagnets to be installed in the existing 26.7-km long tunnel. After installation and alignment, the cryomagnets have to be interconnected. The interconnections must ensure the continuity of several functions: vacuum enclosures, beam pipe image currents (RF contacts), cryogenic circuits, electrical power supply, and thermal insulation. In the machine, about 1700 interconnections between cryomagnets are necessary. The interconnections constitute a unique system that is nearly entirely assembled in the tunnel. For each of them, various operations must be done: TIG welding of cryogenic channels (=50 000 welds), induction soldering of main superconducting cables (=10 000 joints), ultrasonic welding of auxiliary superconducting cables (=20 000 welds), mechanical assembly of various elements, and installation of the multi-layer insulation (=200 000 m2). Defective junctions could be very difficult and expensive to detect and repair. Reproducible and reliable processes must be implemented together with a strict quality control. The interconnection activities are optimized taking into account several constraints: limited space availability, tight installation schedule, high level of quality, high reliability and economical aspects. In this paper, the functions to be fulfilled by the interconnections and the various technologies selected are presented. Quality control at different levels (component/ interconnect, subsystem, system) is also described. The interconnection assembly sequences are summarized. Finally, the validation of the interconnection procedures is presented, based in particular on the LHC prototype cell assembly (STRING2)
Keywords :
accelerator RF systems; accelerator magnets; cryogenics; ion accelerators; soldering; storage rings; superconducting interconnections; superconducting magnets; synchrotrons; ultrasonic welding; 26.7 km; LHC cryomagnets; LHC prototype cell assembly; STRING2; TIG welding; alignment; beam pipe image currents; cryogenic channels; cryogenic circuits; defective junctions; economics; electrical power supply; high reliability; induction soldering; installation; interconnection assembly sequences; interconnections; limited space availability; multilayer insulation; quality control; radiofrequency contacts; superconducting cables; thermal insulation; tight installation schedule; twin-aperture high-field superconducting cryomagnets; ultrasonic welding; vacuum enclosures; Assembly; Cryogenics; Integrated circuit interconnections; Large Hadron Collider; Physics; Power system interconnection; Quality control; Space technology; Superconducting cables; Welding;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Particle Accelerator Conference, 2001. PAC 2001. Proceedings of the 2001
Conference_Location :
Chicago, IL
Print_ISBN :
0-7803-7191-7
Type :
conf
DOI :
10.1109/PAC.2001.987584
Filename :
987584
Link To Document :
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