Diffusion model for the oxidation of zirconium at 573 and 623 K
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- Type
- article
- Published
- 1994-06-01
- Cited by
- 29
- References
- 7
- OpenAlex
- https://openalex.org/W2062086103
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:96582286
Keywords
Zirconium, Isothermal process, Recrystallization (geology), Diffusion, Crystallite
References
- A Comparative Study of Numerical Methods for Moving Boundary Problems
- The diffusion of oxygen in alpha-zirconium
- The kinetics and mechanism of the oxidation of zircaloy-2 at 350–500 °C
- Breakaway oxidation of zirconium at 573 K
- Materials interactions during high temperature transients: Discussion about the use of the kinetic rate constants in Zircaloy oxidation
- Transmission electron microscopy of αZrO2 films formed in 573 K oxygen
- An electron microscope study of breakaway oxidation of zirconium at 623 K
Cited by
- Joining behaviour of crystalline and amorphous Zr-based alloy using Cu-based braze
- Effets d'irradiations sur l'oxydation du zirconium et la diffusion de l'uranium dans la zircone
- Non-equilibrium thermodynamics and variational principles for fully coupled thermal–mechanical–chemical processes
- Mechano-Chemical Aspects of High Temperature Oxidation: A Mesoscopic Model Applied to Zirconium Alloys
- Criterion for instability of oxide film growth with respect to formation of cracks
- Finite element analysis of oxidation induced metal depletion at oxide–metal interface
- Surface chemistry of zirconium
- Roles of texture in controlling oxidation, hydrogen ingress and hydride formation in Zr alloys
- Dynamical diffusion model to simulate the oxide crystallization and grain growth during oxidation of zirconium at 573 and 623 K
- Influence of stress developed due to oxide layer formation on the oxidation kinetics of Zr–2.5%Nb alloy
- Optical and structural studies of films grown thermally on zirconium surfaces
- Reaction–Diffusion–Stress Coupling Effect in Inelastic Oxide Scale During Oxidation
- Growth of oxide films on metal surfaces : transition from parabolic to linear kinetics
- In situ characterization of Zircaloy-4 oxidation at 500 °C in dry air
- A finite element analysis of the reactive element effect in oxidation of chromia-forming alloys
- Diffusion model for the oxidation of Zircaloy-4 at 400°C in steam. The influence of metallurgical structure (precipitates and grain size)
- Influence of water chemistry on the corrosion mechanism of a zirconium–niobium alloy in simulated light water reactor coolant conditions
- Zirconium oxidation under high-energy heavy-ion irradiation
- Stress–oxidation interaction in selective oxidation of Cr–Fe alloys
- Etude expérimentale de l'oxydation des alliages de zirconium à haute pression de vapeur d'eau et modélisation des mécanismes
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