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Effect of heating temperature on oxidation behavior of low density steels with medium manganese content

Publication ,  Journal Article
Shujia, L; Naibing, L; Suhuai, D; Zhijun, L; Shixin, X
Published in: Metallurgical Research & Technology
2020

The high temperature oxidation behavior of Fe–C (0.22%)–Mn (5.3%)–Al (2.5–3.2%)–Si (2.2%) low density steel was studied in the atmosphere of (2%O + Ar) by high temperature oxidation simulation tests. The samples were kept at 900 °C–1300 °C for 30 minutes and the morphology and the content distribution of oxide layer in the scale were characterized by scanning electron microscope combined with energy dispersive spectrometer. The results show that: when the holding temperature is below 1150 °C, the oxidized weight gain increases parabolically with time; when the temperature is maintained above 1200 °C, the oxidized weight gain increases linearly. Oxidation activation energy decreases with experimental temperature from 225.31 to 43.4 kJ/mol and due to formation of liquid oxidation products the value of Ea decreases sharply from 1100 °C.For all range of temperature the outer layer of the scale is FeO–MnO oxide while the scale is mainly SiO–AlO–FeO–MnO near the matrix. Few variations could be observed for the morphology of scales when the heating temperature ranged from 900 °C to 1100 °C. When the heating temperature is over 1150 °C the liquid FeSiO and FeO–SiO–MnO phases in the scale were newly formed, leading to the penetration of liquid oxide scale into the steel, which makes descaling difficult. Therefore, to facilitate the descaling operation before hot rolling, temperature should be controlled below 1150 °C in the reheating furnace.

Duke Scholars

Published In

Metallurgical Research & Technology

DOI

EISSN

2271-3654

ISSN

2271-3646

Publication Date

2020

Volume

117

Issue

6

Start / End Page

623 / 623

Publisher

EDP Sciences

Related Subject Headings

  • 4019 Resources engineering and extractive metallurgy
 

Citation

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Shujia, L., Naibing, L., Suhuai, D., Zhijun, L., & Shixin, X. (2020). Effect of heating temperature on oxidation behavior of low density steels with medium manganese content. Metallurgical Research & Technology, 117(6), 623–623. https://doi.org/10.1051/metal/2020077
Shujia, Li, Lyu Naibing, Deng Suhuai, Luo Zhijun, and Xu Shixin. “Effect of heating temperature on oxidation behavior of low density steels with medium manganese content.” Metallurgical Research & Technology 117, no. 6 (2020): 623–623. https://doi.org/10.1051/metal/2020077.
Shujia L, Naibing L, Suhuai D, Zhijun L, Shixin X. Effect of heating temperature on oxidation behavior of low density steels with medium manganese content. Metallurgical Research & Technology. 2020;117(6):623–623.
Shujia, Li, et al. “Effect of heating temperature on oxidation behavior of low density steels with medium manganese content.” Metallurgical Research & Technology, vol. 117, no. 6, EDP Sciences, 2020, pp. 623–623. Crossref, doi:10.1051/metal/2020077.
Shujia L, Naibing L, Suhuai D, Zhijun L, Shixin X. Effect of heating temperature on oxidation behavior of low density steels with medium manganese content. Metallurgical Research & Technology. EDP Sciences; 2020;117(6):623–623.
Journal cover image

Published In

Metallurgical Research & Technology

DOI

EISSN

2271-3654

ISSN

2271-3646

Publication Date

2020

Volume

117

Issue

6

Start / End Page

623 / 623

Publisher

EDP Sciences

Related Subject Headings

  • 4019 Resources engineering and extractive metallurgy