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Methods for determination of the brittleness properties of WWER type reactor vessels; Metodika za opredelyane izmenenieto na krekhkostnite svojstva na korpusite na reaktorite ot tipa WWER

Abstract

Three different formulae are presented in order to model the functional dependence of the radiation embrittlement temperature on the neutron fluence values and Cu and Ni contents in the steel alloy. The problem is a part of the modelling approach (alternative to the instrumental testing of samples -namely the Charpy test) for determination of the parameters characterizing the aging of the metals under neutron flux, high pressure and temperature influence. Comparison diagrams of the modelling and Charpy test results are provided. It is concluded that the combination of the curves of the three different models and the analysis of the results would amount to better credibility in the determination of the changes in the radiation embrittlement temperature. 5 refs., 5 figs. (R.Ts.).
Publication Date:
Dec 31, 1993
Product Type:
Miscellaneous
Report Number:
INIS-mf-13793; CONF-9305325-
Reference Number:
SCA: 360106; 360103; 210200; PA: AIX-25:017392; EDB-94:037170; ERA-19:009655; NTS-94:015265; SN: 94001158943
Resource Relation:
Conference: 2. conference on metrology assurance of nuclear energy: from theory to practical applications,Varna (Bulgaria),30 May - 1 Jun 1993; Other Information: PBD: 1993
Subject:
36 MATERIALS SCIENCE; 21 SPECIFIC NUCLEAR REACTORS AND ASSOCIATED PLANTS; EMBRITTLEMENT; CHARPY TEST; REACTOR VESSELS; NEUTRON FLUENCE; PHYSICAL RADIATION EFFECTS; AGING; ALLOYS; BRITTLENESS; COMPARATIVE EVALUATIONS; COPPER; EXPERIMENTAL DATA; NICKEL; PRESSURE DEPENDENCE; STEELS; TEMPERATURE DEPENDENCE; WWER TYPE REACTORS; 360106; 360103; 210200; RADIATION EFFECTS; MECHANICAL PROPERTIES; POWER REACTORS, NONBREEDING, LIGHT-WATER MODERATED, NONBOILING WATER COOLED
OSTI ID:
10130330
Research Organizations:
Bylgarska Akademiya na Naukite, Sofia (Bulgaria). Inst. za Yadrena Izsledvaniya i Yadrena Energetika
Country of Origin:
Bulgaria
Language:
Bulgarian
Other Identifying Numbers:
Other: ON: DE94615553; TRN: BG9300320017392
Availability:
OSTI; NTIS (US Sales Only); INIS
Submitting Site:
INIS
Size:
6 p.
Announcement Date:
Jul 04, 2005

Citation Formats

Apostolov, T, Ilieva, K, and Petrova, T. Methods for determination of the brittleness properties of WWER type reactor vessels; Metodika za opredelyane izmenenieto na krekhkostnite svojstva na korpusite na reaktorite ot tipa WWER. Bulgaria: N. p., 1993. Web.
Apostolov, T, Ilieva, K, & Petrova, T. Methods for determination of the brittleness properties of WWER type reactor vessels; Metodika za opredelyane izmenenieto na krekhkostnite svojstva na korpusite na reaktorite ot tipa WWER. Bulgaria.
Apostolov, T, Ilieva, K, and Petrova, T. 1993. "Methods for determination of the brittleness properties of WWER type reactor vessels; Metodika za opredelyane izmenenieto na krekhkostnite svojstva na korpusite na reaktorite ot tipa WWER." Bulgaria.
@misc{etde_10130330,
title = {Methods for determination of the brittleness properties of WWER type reactor vessels; Metodika za opredelyane izmenenieto na krekhkostnite svojstva na korpusite na reaktorite ot tipa WWER}
author = {Apostolov, T, Ilieva, K, and Petrova, T}
abstractNote = {Three different formulae are presented in order to model the functional dependence of the radiation embrittlement temperature on the neutron fluence values and Cu and Ni contents in the steel alloy. The problem is a part of the modelling approach (alternative to the instrumental testing of samples -namely the Charpy test) for determination of the parameters characterizing the aging of the metals under neutron flux, high pressure and temperature influence. Comparison diagrams of the modelling and Charpy test results are provided. It is concluded that the combination of the curves of the three different models and the analysis of the results would amount to better credibility in the determination of the changes in the radiation embrittlement temperature. 5 refs., 5 figs. (R.Ts.).}
place = {Bulgaria}
year = {1993}
month = {Dec}
}