Published 2009 | Version v1
Journal article

Reactor pressure vessel steel degradation studied by Moessbauer and positron annihilation spectroscopy

Creators

  • 1. Slovak University, Bratislava (Sierra Leone). Dept. of Nuclear Physics and Technology

Description

The work applies Moessbauer spectroscopy (Ms) and positron annihilation spectroscopy (Pas) to evaluate the microstructure parameters of materials. These methods are used for collecting additional characteristics for understanding the degradation processes in reactor pressure vessel steels. Samples from the Russian 15Kh2MFA and Sv10khMFT steels, commercially used at WWER-440 nuclear reactors, were irradiated near the core at NPP Bohunice (Slovakia) to neutron fleeces in the range 7.8x1023 m-2 to 2.5x1024 m-2.Systematic changes in the Ms and Pas spectra were observed mainly during the early period of irradiation. These could be due to changes caused by precipitation of elements like Cu, P or Cr, mainly in carbides, on the suffice. The Ms results confirm that the close environment of Fe atoms in the b.c.c. lattice of Rp steels remains almost stable after initial changes and can be correlated with the ductile-bristle transition temperature curve from mechanical tests. Positron annihilation lifetime measurements using the Pulsed Low Energy Positron System (Peps) were applied for investigation of defects of irradiated and thermally treated reactor pressure vessel (Rp) steels. Peps results showed that the changes in the microstructure of the Rp-steel properties caused by neutron irradiation and post-irradiation thermal treatment can be detected in the surface as well as the bulk region. (author).

Additional details

Publishing Information

Journal Title
Jordan Journal of Physics
Journal Volume
2
Journal Issue
2
Journal Page Range
p. 73-88
ISSN
1994-7607

Optional Information

Notes
63 refs., 12 figs., 4 tab.