4.6 Article

Study of the mechanical properties and effects of particles for oxide dispersion strengthened Zircaloy-4 via a 3D representative volume element model

期刊

NUCLEAR ENGINEERING AND TECHNOLOGY
卷 54, 期 5, 页码 1549-1559

出版社

KOREAN NUCLEAR SOC
DOI: 10.1016/j.net.2021.10.044

关键词

Accident tolerant fuel; Oxide dispersion strengthened Zircaloy-4; cladding; 3D representative volume element model; Mechanical properties; Cladding deformation

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In this study, the mechanical properties and effects of Y2O3 particles for oxide dispersion strengthened Zircaloy-4 (ODS Zry-4) cladding were investigated using a simulation technique. It was found that the volume fraction of Y2O3 particles had a significant impact on the mechanical properties. The predicted deformation behavior of ODS Zry-4 cladding under transient conditions showed improved performance compared to Zry-4 cladding.
As an accident tolerant fuel (ATF) concept, oxide dispersion strengthened Zircaloy-4 (ODS Zry-4) cladding has been developed to enhance the mechanical properties of cladding using laser processing technology. In this study, a simulation technique was established to investigate the mechanical properties and effects of Y2O3 particles for the ODS Zry-4. A 3D representative volume element (RVE) model was developed considering the parameters of the size, shape, distribution and volume fraction (VF) of the Y2O3 particles. From the 3D RVE model, the Young's modulus, coefficient of thermal expansion (CTE) and creep strain rate of the ODS Zry-4 were effectively calculated. It was observed that the VF of Y2O3 particles had a significant effect on the aforementioned mechanical properties. In addition, the predicted properties of ODS Zry-4 were applied to a simulation model to investigate cladding deformation under a transient condition. The ODS Zry-4 cladding showed better performance, such as a delay in large deformation compared to Zry-4 cladding, which was also found experimentally. Accordingly, it is expected that the simulation approach developed here can be efficiently employed to predict more properties and to provide useful information with which to improve ODS Zry-4. (c) 2021 Korean Nuclear Society, Published by Elsevier Korea LLC. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

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