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Kysela, J.; Balek, V.; Zmitko, M.; Brozova, A.; Burda, J.; Hoffmann, H.; Ruehle, W.; Bezdicka, P.
Societe Francaise d'Energie Nucleaire (SFEN), 75 - Paris (France); International Atomic Energy Agency, Vienna (Austria)2002
Societe Francaise d'Energie Nucleaire (SFEN), 75 - Paris (France); International Atomic Energy Agency, Vienna (Austria)2002
AbstractAbstract
[en] Stress corrosion cracking of low-alloyed steel 22NiMoCr37 is evaluated with the goal to determine crack growth rate in irradiated steel under conditions simulating closely conditions of BWR RPV under operation. For the experiment, in pile BWR experimental loop has been built at Nuclear Research Institute, Rez. During the experiment, specimens are loaded by cyclic and constant load. Crack growth is monitored by means of potential drop measurement and COD. Corrosion layers formed on specimens in reactor water loop exposed to BWR primary water chemistry and radiation were studied. Two sets of specimens were placed in loop channels. One set of specimens was situated in reactor conditions and the second set out of reactor, other parameters like water chemistry (e.g. concentration of hydrogen, oxygen and conductivity), temperature and flow rate were identical. By means of this an effect of radiation could be studied. The differences in chemical composition, structure and microstructure of corrosion products were characterized by SEM and X-ray powder diffractometry. The differences in microstructure of corrosion layer formed under different conditions were observed. (authors)
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2002; 13 p; Chemistry 2002: International conference on water chemistry in nuclear reactors systems - operation optimisation and new developments; Chimie 2002: La chimie de l'eau dans les reacteurs nucleaires - Optimisation de l'exploitation et developpements nouveaux; Avignon (France); 22-26 Apr 2002; Also available from SFEN-CHIMIE2002, 67, rue Blomet, 75015 Paris (France)
Record Type
Miscellaneous
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Conference
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ALLOYS, CARBON ADDITIONS, CHEMISTRY, CHROMIUM ADDITIONS, CHROMIUM ALLOYS, COHERENT SCATTERING, CONTAINERS, DIFFRACTION, ELECTRON MICROSCOPY, ENRICHED URANIUM REACTORS, HEAT RESISTANT MATERIALS, HEAT RESISTING ALLOYS, IRON ALLOYS, IRON BASE ALLOYS, LOW ALLOY STEELS, MATERIALS, MICROSCOPY, MOLYBDENUM ADDITIONS, MOLYBDENUM ALLOYS, NICKEL ADDITIONS, NICKEL ALLOYS, POWER REACTORS, RADIATION EFFECTS, REACTORS, SCATTERING, STEELS, THERMAL REACTORS, TRANSITION ELEMENT ALLOYS, WATER COOLED REACTORS, WATER MODERATED REACTORS
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