Exploring uncommon Fe-oxides in non-metallic inclusions in ultra-high-strength steel
Journal article, 2024

Investigating non-metallic inclusions within ultra-high-strength-steel via conventional methods is a known: however, the challenge is to obtain chemical information of such inclusions at the sub-micrometer level. In this context, probing Fe-based oxide in inclusions is a vital aspect for guiding steel’ performance. The vibrational properties of sub micrometer size Fe-based oxides were investigated by Raman mapping along with chemometric analysis with the aim of probing their chemical composition. Highly contrasted Raman spectra were recorded from several inclusions embedded at different spatial locations. The observed spectral features were identified as specific markers of hematite (α-Fe2O3) and magnetite (Fe3O4). Principal Component Analysis was used to confirm the presence of these markers and potentially revealing additional patterns. Their unambiguous assignment has been inferred by comparing our experimental findings with the literature data recorded either in single crystals of iron oxides or oxyhydroxides. Micro-Raman spectroscopy is proven to be a reliable, cost-effective, and non-invasive tool for the unambiguous identification of subsurface regions of steel.

Principal component analysis

Low carbon steel

Raman mapping

Non-metallic inclusion

Fe-based oxides

Author

Ekta Rani

University of Oulu

Vandna Kumari Gupta

Chalmers, Chemistry and Chemical Engineering, Applied Chemistry

Francis Gyakwaa

University of Oulu

Mourad Kharbach

University of Oulu

LAB University of Applied Sciences

Harishchandra Singh

University of Oulu

Tuomas Alatarvas

University of Oulu

Anna Martinelli

Chalmers, Chemistry and Chemical Engineering, Applied Chemistry

Timo Fabritius

University of Oulu

Marko Huttula

University of Oulu

Results in Materials

2590048X (eISSN)

Vol. 23 100598

Subject Categories

Materials Engineering

Earth and Related Environmental Sciences

DOI

10.1016/j.rinma.2024.100598

More information

Latest update

7/1/2024 7