Advanced 3D characterisation of iodine induced stress corrosion cracks in zirconium alloys

Author:

Gillen Conor,Garner Alistair,Plowman Adam,Race Christopher P.,Lowe Tristan,Jones Christopher,Moore Katie L.,Frankel Philipp

Funder

EPSRC - PACIFIC

EPSRC Centre for Doctoral Training in Nuclear Fission- Next Generation Nuclear

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference53 articles.

1. Pellet-clad interaction (PCI) failures of zirconium alloy fuel cladding—a review;Cox;J. Nucl. Mater.,1990

2. A Review of Pellet–Clad Interaction Behavior in Zirconium Alloy Fuel Cladding;Piro,2017

3. S. Beguin, PCI-related constraints on EDF PWRs and associated challenges, in: Pellet-Clad Interact. Water React. Fuels, Organisation for Economic Co-Operation and Development - Nuclear Energy Agency, 75 - Paris (France); 548 p; ISBN 92-64-01157-9; Worldcat; Jul 2005; p. 53-62; Seminar: Pellet-clad Interaction in Water Reactor Fuels; Aix-en-Provence (France); 9-11 Mar 2004;, 2005: pp. 53–62. doi.org/10.1787/9789264011588-en.

4. Mitigating the Stress Corrosion Cracking of Zircaloy-4 Fuel Sheathing: Siloxane Coatings Revisited;Ferrier;J. Nucl. Eng. Radiat. Sci.,2016

5. First-principles insights into the nature of zirconium–iodine interactions and the initiation of iodine-induced stress–corrosion cracking;Rossi;J. Nucl. Mater.,2015

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