Proposal of new oxidation kinetics for sponge base E110 cladding tubes material

Study of high temperature steam oxidation kinetics during the high temperature oxidation was carried out on the sponge base E110 cladding tubes material in the temperature range 600–1300 °C. The oxidation kinetics derived from the weight gain measurements showed a parabolic rate law for temperatures...

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Main Authors: Krejčí Jakub, Vrtílková Věra, Gajdoš Pavel, Rada David
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:EPJ Nuclear Sciences & Technologies
Online Access:https://doi.org/10.1051/epjn/2017013
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author Krejčí Jakub
Vrtílková Věra
Gajdoš Pavel
Rada David
author_facet Krejčí Jakub
Vrtílková Věra
Gajdoš Pavel
Rada David
author_sort Krejčí Jakub
collection DOAJ
description Study of high temperature steam oxidation kinetics during the high temperature oxidation was carried out on the sponge base E110 cladding tubes material in the temperature range 600–1300 °C. The oxidation kinetics derived from the weight gain measurements showed a parabolic rate law for temperatures 1100 °C and higher only. For lower temperatures in range 800–1050 °C especially, the parabolic law leads to very conservative prediction. Therefore, the new oxidation kinetics, different from the parabolic law, was designed. The experimental database containing more than 800 data points was compared with the new developed UJP-correlation and available correlations for E110 and Zircaloy alloys. Statistical analysis for all tested correlations was provided.
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spelling doaj.art-5ef835d475384dbdba7dc9afcf0307da2022-12-21T22:08:59ZengEDP SciencesEPJ Nuclear Sciences & Technologies2491-92922017-01-0131810.1051/epjn/2017013epjn150053Proposal of new oxidation kinetics for sponge base E110 cladding tubes materialKrejčí JakubVrtílková VěraGajdoš PavelRada DavidStudy of high temperature steam oxidation kinetics during the high temperature oxidation was carried out on the sponge base E110 cladding tubes material in the temperature range 600–1300 °C. The oxidation kinetics derived from the weight gain measurements showed a parabolic rate law for temperatures 1100 °C and higher only. For lower temperatures in range 800–1050 °C especially, the parabolic law leads to very conservative prediction. Therefore, the new oxidation kinetics, different from the parabolic law, was designed. The experimental database containing more than 800 data points was compared with the new developed UJP-correlation and available correlations for E110 and Zircaloy alloys. Statistical analysis for all tested correlations was provided.https://doi.org/10.1051/epjn/2017013
spellingShingle Krejčí Jakub
Vrtílková Věra
Gajdoš Pavel
Rada David
Proposal of new oxidation kinetics for sponge base E110 cladding tubes material
EPJ Nuclear Sciences & Technologies
title Proposal of new oxidation kinetics for sponge base E110 cladding tubes material
title_full Proposal of new oxidation kinetics for sponge base E110 cladding tubes material
title_fullStr Proposal of new oxidation kinetics for sponge base E110 cladding tubes material
title_full_unstemmed Proposal of new oxidation kinetics for sponge base E110 cladding tubes material
title_short Proposal of new oxidation kinetics for sponge base E110 cladding tubes material
title_sort proposal of new oxidation kinetics for sponge base e110 cladding tubes material
url https://doi.org/10.1051/epjn/2017013
work_keys_str_mv AT krejcijakub proposalofnewoxidationkineticsforspongebasee110claddingtubesmaterial
AT vrtilkovavera proposalofnewoxidationkineticsforspongebasee110claddingtubesmaterial
AT gajdospavel proposalofnewoxidationkineticsforspongebasee110claddingtubesmaterial
AT radadavid proposalofnewoxidationkineticsforspongebasee110claddingtubesmaterial