Hydrogen diffusion in zirconium alloys: The role of beta-phase morphology, cold work and the anisotropy of the hcp crystal sturcture
Zr is used extensively in nuclear reactors worldwide in a broad range of microstructural conditions due to its thermomechanical, corrosion and neutronic properties. However the affinity between H and Zr leaves Zr-alloys susceptible to ZrH precipitation and delayed hydride cracking (DHC); a process controlled by the diffusion of H. The purpose of this work is to characterize the effect of the beta-Zr phase, cold work, grain morphology and anisotropy of the Zr hcp lattice on H mobility; building on the platform established by J.R. Santisteban et. al., whom have used neutronic techniques for the non-destructive determination of low H content in metals. On successful completion of this work in-situ experiments will be carried out on hydrogenated samples subjected to stress and the H diffusion to a stress concentration monitored providing fundamental insight into the DHC process.
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- zirconium
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Provenance | |
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Creator | Dr Javier Santisteban; Professor Mark Daymond; Dr Anton Tremsin; Dr Laura Barrow; Dr Andrew Barrow; Professor Michael Fitzpatrick; Mr Robin Woracek |
Publisher | ISIS Neutron and Muon Source |
Publication Year | 2015 |
Rights | CC-BY Attribution 4.0 International; https://creativecommons.org/licenses/by/4.0/ |
OpenAccess | true |
Contact | isisdata(at)stfc.ac.uk |
Representation | |
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Resource Type | Dataset |
Discipline | Photon- and Neutron Geosciences |
Temporal Coverage Begin | 2012-03-24T12:49:15Z |
Temporal Coverage End | 2012-10-16T10:38:43Z |