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Use of charged particle accelerators for imitation and study of irradiation influence on mechanical properties of nuclear and thermonuclear reactor materials. Part 2; Ispol`zovanie uskoritelej zaryazhennykh chastits dlya imitatsii i izucheniya vliyaniya oblucheniya na mekhanicheskie svojstva materialov yadernykh i termoyadernykh reaktorov. Chast` 2

Abstract

Nuclear and physical aspects of imitation studies in radiation material science using proton beams with the energy up to 100 MeV are analysed. Energy dependence of defect formation total cross section in iron (as well as its elastic and inelastic channels) are calculated. Levels of element-transmutant generation and energy dependence of their concentration in Fe, Cr, Ni targets at proton fluence F{sub p}=6,25x10{sup 21} p/cm{sup 2} are estimated. Radiation heating of targets and maximal rate of defect formation resulting from proton irradiation of steel assembly samples cooled by water, air, helium and liquid sodium are calculated. Level of induced activity in Fe, Cr, Ni targets is determined. 33 refs.; 20 figs.; 6 tables. (author).
Publication Date:
Dec 31, 1991
Product Type:
Technical Report
Report Number:
KFTI-91-3
Reference Number:
SCA: 360106; PA: AIX-24:032259; SN: 93000962691
Resource Relation:
Other Information: PBD: 1991
Subject:
36 MATERIALS SCIENCE; ALLOYS; PHYSICAL RADIATION EFFECTS; KHARKOV LINAC; PROTON SOURCES; IRON; CHROMIUM; NICKEL; ABSORPTION; COMPUTERIZED SIMULATION; CRYSTAL DEFECTS; ENERGY DEPENDENCE; HEAT TRANSFER; MEV RANGE 10-100; PROTON BEAMS; RADIATION HEATING; TARGETS; TOTAL CROSS SECTIONS; TRANSMUTATION; RADIOACTIVATION; 360106; RADIATION EFFECTS
OSTI ID:
10136509
Research Organizations:
Gosudarstvennyj Komitet po Ispol`zovaniyu Atomnoj Ehnergii SSSR, Moscow (Russian Federation). Tsentral`nyj Nauchno-Issledovatel`skij Inst. Informatsii i Tekhniko-Ehkonomicheskikh Issledovanij po Atomnoj Nauke i
Country of Origin:
Ukraine
Language:
Russian
Other Identifying Numbers:
Other: ON: DE93620578; TRN: UA9300085032259
Availability:
OSTI; NTIS (US Sales Only); INIS
Submitting Site:
INIS
Size:
[30] p.
Announcement Date:
Jul 05, 2005

Citation Formats

Zelenskij, V F, Ozhigov, L S, Mushnikov, V N, Neklyudov, I M, Khizhnyak, N A, and Shilyaev, B A. Use of charged particle accelerators for imitation and study of irradiation influence on mechanical properties of nuclear and thermonuclear reactor materials. Part 2; Ispol`zovanie uskoritelej zaryazhennykh chastits dlya imitatsii i izucheniya vliyaniya oblucheniya na mekhanicheskie svojstva materialov yadernykh i termoyadernykh reaktorov. Chast` 2. Ukraine: N. p., 1991. Web.
Zelenskij, V F, Ozhigov, L S, Mushnikov, V N, Neklyudov, I M, Khizhnyak, N A, & Shilyaev, B A. Use of charged particle accelerators for imitation and study of irradiation influence on mechanical properties of nuclear and thermonuclear reactor materials. Part 2; Ispol`zovanie uskoritelej zaryazhennykh chastits dlya imitatsii i izucheniya vliyaniya oblucheniya na mekhanicheskie svojstva materialov yadernykh i termoyadernykh reaktorov. Chast` 2. Ukraine.
Zelenskij, V F, Ozhigov, L S, Mushnikov, V N, Neklyudov, I M, Khizhnyak, N A, and Shilyaev, B A. 1991. "Use of charged particle accelerators for imitation and study of irradiation influence on mechanical properties of nuclear and thermonuclear reactor materials. Part 2; Ispol`zovanie uskoritelej zaryazhennykh chastits dlya imitatsii i izucheniya vliyaniya oblucheniya na mekhanicheskie svojstva materialov yadernykh i termoyadernykh reaktorov. Chast` 2." Ukraine.
@misc{etde_10136509,
title = {Use of charged particle accelerators for imitation and study of irradiation influence on mechanical properties of nuclear and thermonuclear reactor materials. Part 2; Ispol`zovanie uskoritelej zaryazhennykh chastits dlya imitatsii i izucheniya vliyaniya oblucheniya na mekhanicheskie svojstva materialov yadernykh i termoyadernykh reaktorov. Chast` 2}
author = {Zelenskij, V F, Ozhigov, L S, Mushnikov, V N, Neklyudov, I M, Khizhnyak, N A, and Shilyaev, B A}
abstractNote = {Nuclear and physical aspects of imitation studies in radiation material science using proton beams with the energy up to 100 MeV are analysed. Energy dependence of defect formation total cross section in iron (as well as its elastic and inelastic channels) are calculated. Levels of element-transmutant generation and energy dependence of their concentration in Fe, Cr, Ni targets at proton fluence F{sub p}=6,25x10{sup 21} p/cm{sup 2} are estimated. Radiation heating of targets and maximal rate of defect formation resulting from proton irradiation of steel assembly samples cooled by water, air, helium and liquid sodium are calculated. Level of induced activity in Fe, Cr, Ni targets is determined. 33 refs.; 20 figs.; 6 tables. (author).}
place = {Ukraine}
year = {1991}
month = {Dec}
}