Comprehensive Nuclear Materials 2012
DOI: 10.1016/b978-0-08-056033-5.00063-x
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Corrosion of Zirconium Alloys

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Cited by 115 publications
(96 citation statements)
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“…The sub-stoichiometric zirconium oxide captured the oxygen atoms from near stoichiometric tin oxides or niobium oxides, and the reduction of tin ions caused the protection loss of the inner layer. The oxide layer was observed to be microcrystalline, growing into columnar grains [7]. The mean crystallite size increased at increasing oxide thickness.…”
Section: Oxidationmentioning
confidence: 87%
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“…The sub-stoichiometric zirconium oxide captured the oxygen atoms from near stoichiometric tin oxides or niobium oxides, and the reduction of tin ions caused the protection loss of the inner layer. The oxide layer was observed to be microcrystalline, growing into columnar grains [7]. The mean crystallite size increased at increasing oxide thickness.…”
Section: Oxidationmentioning
confidence: 87%
“…The δ-hydride phase was found to be the predominant at hydrogen content up to 1250 wt ppm, at about 3000 wt ppm of hydrogen a significant amount of γ-hydride was observed, and at the highest hydrogen content, over 6000 wt ppm, the ε-hydride phase appeared [23]. The hydrides observed in fuel cladding exposed to reactor environment were the most often fcc δ-hydride ZrH 1.6 [7]. The intergranular hydrides had a stronger effect on ductility than the intragranular ones [24].…”
Section: Hydrogen Degradationmentioning
confidence: 93%
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“…Oxidační kinetiku lze rozdělit na dvě stádia, která jsou od sebe oddělena transientním stavem (transientem) [3]. Situaci schématicky ilustruje Obr.…”
Section: úVodunclassified