DocumentCode :
731641
Title :
Evaluation of the mechanical properties of irradiated NPP´s structural materials using semidestructive testing method
Author :
Eliasova, Ivana ; Kopriva, Radim ; Falcnik, Michal
Author_Institution :
UJV qez, a.s., Husinec, Czech Republic
fYear :
2015
fDate :
27-30 May 2015
Firstpage :
1
Lastpage :
5
Abstract :
Determination of current mechanical properties of several structural materials of NPP components, especially reactor internals, is not possible using the standard testing methods, in connection with the material volume necessary for the testing. Sampling of the optimal material volume usually brings adverse consequences of affecting the integrity of component or in several cases destruction of the whole evaluated component. For standard size specimens, it is also necessary to take into account the high activity of the material, with influence on the collective dose of hot cell facilities personnel. In comparison with reactor pressure vessel, reactor internals are not covered by the system of surveillance samples as well as other hardly replaceable components of the primary circuit, e.g. primary piping, steam generator etc. Monitoring the mechanical properties changes is very important to assure structural integrity of NPP components, especially within the context of their operational life extension. Aim of this work is to present the advantages of the semi-destructive testing methods (small punch tests, automated ball indentation test) in the process current mechanical properties evaluation of the hardly replaceable long-term operated NPP components, mainly reactor internals, primary piping, steam generators and reactor pressure vessels. Semi-destructive testing techniques use technological processes and equipment enabling the direct determination of mechanical properties from the component surface without affecting its integrity. Advantage of semi-destructive degradation mechanisms quantification could be very promising for use in the field of nuclear energy for components of NPP as well as in other industrial sectors, e.g. chemical and petrochemical industry.
Keywords :
design engineering; indentation; nondestructive testing; nuclear power stations; pressure vessels; automated ball indentation test; irradiated NPP structural material; nuclear power plant; primary piping; reactor internal; reactor pressure vessel; semidestructive testing; small punch test; steam generator; structural integrity; Correlation; ISO standards; Industries; Mechanical factors; Personnel; Testing; Welding; Automated ball indentation test; Nuclear power plant structural materials; Small punch test;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Energy (IYCE), 2015 5th International Youth Conference on
Conference_Location :
Pisa
Print_ISBN :
978-1-4673-7171-1
Type :
conf
DOI :
10.1109/IYCE.2015.7180751
Filename :
7180751
Link To Document :
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