On the stable/metastable nature of the γ-hydride phase in Zircaloy-2: Microstructural characterization by electron diffraction, electron energy-loss spectroscopy, and diffraction line profile analysis

Author:

Badr N.N.,Long F.,Lucas T.ORCID,Luo Y.ORCID,Topping M.,Balogh L.ORCID,Béland L.K.ORCID,Yao Z.ORCID,King G.ORCID,Daymond M.R.

Funder

NSERC

Argonne National Laboratory

Canadian Institutes of Health Research

Government of Saskatchewan

University Network of Excellence in Nuclear Engineering

U.S. Department of Energy

National Research Council

Queen's University

Office of Science

Australian Psychological Society

University of Saskatchewan

Canada Foundation for Innovation

Publisher

Elsevier BV

Reference95 articles.

1. The thermodynamics of hydride precipitation: the importance of entropy, enthalpy and disorder;Lumley;Acta Mater.,2014

2. Identification and characterization of a new zirconium hydride;Zhao;J. Microsc.,2008

3. Characterization of zirconium hydrides and phase field approach to a mesoscopic-scale modeling of their precipitation;Zhao,2009

4. Neutron and X-ray diffraction studies of nonstoichiometric metal hydrides;Sidhu;Am. Chem. Soc.,1962

5. Precipitates in metals that dissolve on cooling and form on heating: an example with hydrogen in alpha-zirconium;McRae;J. Nucl. Mater.,2018

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