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Simulation of crystal plasticity in irradiated metals: A case study on Zircaloy-4

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posted on 2025-02-06, 12:10 authored by Chris Hardie, Rhys Thomas, Yang LiuYang Liu, Philipp Frankel, Fionn Dunne
A classical crystal plasticity formulation based on dislocation slip was extended to include the mechanisms of dislocation channelling, with associated strain softening which is observed in many alloys post irradiation. The performance of the model was evaluated against experimental data on Zircaloy-4, which included engineering stress-strain response and high-resolution digital image correlation strain mapping. Variants of the model were developed to evaluate the influence on the strain hardening law used, comparing hardening based on a linear relationship for effective plastic strain with that based on the evolution of geometrically necessary dislocations. In addition, governing equations for simulating the interaction between gliding dislocations with various types of irradiation defect were investigated; this included the comparison of isotropic and anisotropic interactions based on the resultant reaction segments for each interaction. It was shown that the engineering stress-strain response measured by experiment could be captured by many of the model variants, but the simulation of characteristic strain heterogeneity was more sensitive to the model used. Direct modelling of the HRDIC experiments indicated that the model successfully predicted the activation of slip systems in many cases and exhibited localised strain distribution as observed in the experiment. In all models localised kink band formation was predicted, which is not observed experimentally, which highlights limitations in modelling of softening materials with a local crystal plasticity approach and a required area of development going forward.

Funding

MIDAS - Mechanistic understanding of Irradiation Damage in fuel Assemblies

Engineering and Physical Sciences Research Council

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History

Citation

Chris Hardie, Rhys Thomas, Yang Liu, Philipp Frankel, Fionn Dunne, Simulation of crystal plasticity in irradiated metals: A case study on Zircaloy-4, Acta Materialia, Volume 241, 2022, 118361,ISSN 1359-6454, https://doi.org/10.1016/j.actamat.2022.118361.

Author affiliation

College of Science & Engineering Engineering

Version

  • VoR (Version of Record)

Published in

Acta Materialia

Volume

241

Pagination

118361 - 118361

Publisher

Elsevier BV

issn

1359-6454

eissn

1873-2453

Acceptance date

2022-09-11

Copyright date

2022

Available date

2025-02-06

Language

en

Deposited by

Dr Yang Liu

Deposit date

2024-12-02

Rights Retention Statement

  • No

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