PG-EAM - Graduate Program in Aeronautical and Mechanical Engineering
PT EN
Article 2019

Reconstructing the austenite parent microstructure of martensitic steels: A case study for reduced-activation Eurofer steels

Authors

Almeida Junior, D. R.
Raabe, D.
Sandim, H. R.Z.

Journal of Nuclear Materials , vol. 516 , pp. 185-193

ISSN: 00223115

10
Citations
4
Authors

Abstract

© 2019 Elsevier B.V.A computer program was employed to reconstruct the parent microstructure from electron backscatter diffraction maps taken from martensite. The reconstruction is based on a given user-selected orientation relationship. Two reduced-activation ferritic-martensitic Eurofer steels were austenitized for several times and cooled down at different rates. Two parameters are proposed to assess the quality of the reconstruction: the relative frequency of orientations in a determined sub-portion of the Euler space and the distribution of the angular deviation from a given theoretical orientation relationship. The number of active martensitic orientation variants during the transformation depends on grain size. Coarser grains enable a greater number of active variants improving the reconstruction quality. The distributions of angular deviations reveal that the Greninger-Troiano orientation relationship is the one that best describes the martensitic transformation in both steel grades.

Keywords

ARPGE EBSD Martensitic transformation Orientation relationship Reconstruction Reduced-activation ferritic-martensitic steels

Nuclear and High Energy Physics (PHYS) Materials Science (all) (MATE) Nuclear Energy and Engineering (ENER)
: Scopus
Last Update: 2026-06-25
: 2-s2.0-85060256994
PII: S0022311518313692