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Effect of Finishing and Coiling Temperatures on the Nanoprecipitate Dispersion in Novel HSLA Steels

Published online by Cambridge University Press:  05 August 2019

S Deligiannis*
Affiliation:
Lab. of Physical Metallurgy and Center for Electron Microscopy, School of Mining and Metallurgical Engineering, National Technical University of Athens, H. Polytechniou 9, Athens, Greece.
A Alexandratou
Affiliation:
Lab. of Physical Metallurgy and Center for Electron Microscopy, School of Mining and Metallurgical Engineering, National Technical University of Athens, H. Polytechniou 9, Athens, Greece.
NI Makris
Affiliation:
Lab. of Physical Metallurgy and Center for Electron Microscopy, School of Mining and Metallurgical Engineering, National Technical University of Athens, H. Polytechniou 9, Athens, Greece.
P Tsakiridis
Affiliation:
Lab. of Physical Metallurgy and Center for Electron Microscopy, School of Mining and Metallurgical Engineering, National Technical University of Athens, H. Polytechniou 9, Athens, Greece.
G Fourlaris
Affiliation:
Lab. of Physical Metallurgy and Center for Electron Microscopy, School of Mining and Metallurgical Engineering, National Technical University of Athens, H. Polytechniou 9, Athens, Greece.
*
*Corresponding author: stavrosdel123@gmail.com

Abstract

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Type
Microstructural and Mechanical Characterization of Metallic Alloys
Copyright
Copyright © Microscopy Society of America 2019 

References

[1]Park, D-B et al. , Mater. Sci. Eng. A 560 (2013), p. 528.Google Scholar
[2]Tamura, I et al. in “Thermomechanical Processing of High-strength Low-alloy Steels”, (Butterworth & Co. Ltd) p. 155.Google Scholar
[3]Deligiannis, S et al. , Proceedings of Microscopy & Microanalysis 24 (S1) (2018), p. 2230.Google Scholar