DocumentCode :
3195801
Title :
Post-Irradiation Properties of Candidate Materials for High-Power Targets
Author :
Kirk, H.G. ; Ludewig, H. ; Mausner, L. ; Simos, N. ; Thieberger, P. ; McDonald, K.T. ; Sheppard, J.C. ; Trung, Le P. ; Hayato, Y. ; Yoshimura, K.
Author_Institution :
BNL, Upton, NY 11973, USA, hkirk@bnl.gov
fYear :
2005
fDate :
16-20 May 2005
Firstpage :
333
Lastpage :
335
Abstract :
The desire of the high-energy-physics community for more intense secondary particle beams motivates the development of multi-megawatt, pulsed proton sources. The targets needed to produce these secondary particle beams must be sufficiently robust to withstand the intense pressure waves arising from the high peak-energy deposition which an intense pulsed beam will deliver. In addition, the materials used for the targets must continue to perform in a severe radiation environment. The effect of the beam-induced pressure waves can be mitigated by use of target materials with high-yield strength and/or low coefficient of thermal expansion (CTE) [1, 2, 3]. We report here first results of an expanded study of the effects of irradiation on several additional candidate materials with high strength (AlBeMet, beryllium, Ti-V6-Al4) or low CTE (a carbon-carbon composite, a new Toyota” gum” metal alloy [4], Super-Invar).
Keywords :
Composite materials; Iron alloys; Linear particle accelerator; Materials testing; Neutrino sources; Organic materials; Particle beams; Protons; Thermal expansion; Thermal stresses;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Particle Accelerator Conference, 2005. PAC 2005. Proceedings of the
Print_ISBN :
0-7803-8859-3
Type :
conf
DOI :
10.1109/PAC.2005.1590426
Filename :
1590426
Link To Document :
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