BARC/PUB/2015/1197

 
 

Study of oxide and α-Zr(O) growth kinetics from high temperature steam oxidation of Zircaloy-4 cladding

 
     
 
Author(s)

Sawarn, T. K.; Banerjee, S.; Samanta, A.; Rath, B. N.; Kumar, S.
(PIED)

Source

Journal of Nuclear Materials, 2015. Vol. 467: pp. 820-831

ABSTRACT

Oxidation kinetics of Zircaloy-4 cladding of fuel pins of Indian pressurized heavy water reactors (IPHWRs) under a simulated loss of coolant accident (LOCA) condition was investigated. The kinetic rate constants for the oxide and oxygen stabilized a-Zr phase growth were established from the isothermal metal-steam reaction at high temperatures (900e1200 C) with soaking periods in the range of 60-900 s. Oxide and α -Zr(O) layer thickness were measured to derive the respective growth rates. The observed rates obeyed a parabolic law and Arrhenius expressions of rate constants were established. Percentage equivalent clad reacted (%ECR) was calculated using Baker-Just equation. Hydrogen estimation was carried out on the oxidized samples using inert gas fusion technique. The hydrogen pick up was found to be in the range 10-30 ppm. The measured values of oxide and α -Zr(O) layer thickness were compared with the results obtained using OXYCON, an indigenously developed model. The model predicts the oxide growth reasonably well but under predicts the a -Zr(O) growth significantly at thickness values higher than 80 μm.

 
 
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