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A Novel Pathway for Multi-scale High-resolution Time-resolved Residual Stress Evaluation of Laser-welded Eurofer97

Published online by Cambridge University Press:  22 July 2022

Bin Zhu
Affiliation:
School of Mechanical Engineering Sciences, University of Surrey, Guildford, Surrey, UK
Yiqiang Wang
Affiliation:
United Kingdom Atomic Energy Authority, Culham Centre for Fusion Energy, Culham Science Centre, Abingdon, Oxon, UK
Jiří Dluhoš
Affiliation:
TESCAN ORSAY HOLDING, a.s., Libušina třída 21, Brno, Czech Republic
Andy J. London
Affiliation:
United Kingdom Atomic Energy Authority, Culham Centre for Fusion Energy, Culham Science Centre, Abingdon, Oxon, UK
Michael Gorley
Affiliation:
United Kingdom Atomic Energy Authority, Culham Centre for Fusion Energy, Culham Science Centre, Abingdon, Oxon, UK
Mark J. Whiting
Affiliation:
School of Mechanical Engineering Sciences, University of Surrey, Guildford, Surrey, UK
Tan Sui*
Affiliation:
School of Mechanical Engineering Sciences, University of Surrey, Guildford, Surrey, UK
*
*Corresponding author: [email protected]

Abstract

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Type
On Demand - Correlative Microscopy and High-Throughput Characterization for Accelerated Development of Materials in Extreme Environments
Copyright
Copyright © Microscopy Society of America 2022

References

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Zhu, B., Wang, Y, Dluhoš, J., London, A.J., Gorley, M., Whiting, Mark J, Sui, T., A novel pathway for multi-scale high-resolution time-resolved residual stress evaluation of laser-welded Eurofer97, Science Advances, 8,7, (2022). https://doi.org/10.1126/sciadv.abl4592CrossRefGoogle Scholar