DocumentCode
960655
Title
ISABELLE Ring Magnets
Author
McInturf, A.D. ; Sampson, W.B. ; Robins, K.E. ; Dahl, P.F. ; Damm, R. ; Kassner, D. ; Kaugert, J. ; Lasky, C.
Author_Institution
IEEE TMAG
Volume
13
Issue
1
fYear
1977
fDate
1/1/1977 12:00:00 AM
Firstpage
275
Lastpage
278
Abstract
Data are presented to establish the operating characteristics of the proposed ISABELLE Ring Magnets. The harmonic content of both the straight section and ends of the magnets was measured as a function of magnetic field with the correction coils energized or disconnected. The magnets are single layer
turns distribution superconducting saddle coils with \´cold\´ iron shields. The data presented also include quench performance of magnets vs the critical current performance of the wire strands; the rate effect on the harmonic content of the field; the magnetization loss of the magnets; magnetic length; magnetic field vs current/turn; and magnetic field external to the iron shield. The maximum performances of the dipoles and quadrupoles are 4.9 T and 4.6 T (bore field 2-D) with a design requirement of 3.93 T and 3.28 T respectively. Magnets of both types have exceeded the design field on the first quench. The field characteristics are well within the present design requirements for ISABELLE.
turns distribution superconducting saddle coils with \´cold\´ iron shields. The data presented also include quench performance of magnets vs the critical current performance of the wire strands; the rate effect on the harmonic content of the field; the magnetization loss of the magnets; magnetic length; magnetic field vs current/turn; and magnetic field external to the iron shield. The maximum performances of the dipoles and quadrupoles are 4.9 T and 4.6 T (bore field 2-D) with a design requirement of 3.93 T and 3.28 T respectively. Magnets of both types have exceeded the design field on the first quench. The field characteristics are well within the present design requirements for ISABELLE.Keywords
Accelerator magnets, superconducting; Proton storage rings; Critical current; Energy measurement; Iron; Magnetic field measurement; Magnetic shielding; Performance loss; Superconducting coils; Superconducting epitaxial layers; Superconducting filaments and wires; Superconducting magnets;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.1977.1059282
Filename
1059282
Link To Document