Herrera-Ortega, M.; Silaen, A.K.; Walla, N.J.; Zhou, C.Q.; Ekman, T.; Iplik, E.; Eichler, R.; Hirmiz, R.; Maiolo, J.; Chukwulebe, B.;
et al. Numerical Modeling of Oxide Scale Formation on Low-Carbon Steel Under Reheating Furnace Conditions Using Hydrogen and Natural Gas Air–Fuel and Oxy-Fuel Mixtures. Metals 2026, 16, 534.
https://doi.org/10.3390/met16050534
AMA Style
Herrera-Ortega M, Silaen AK, Walla NJ, Zhou CQ, Ekman T, Iplik E, Eichler R, Hirmiz R, Maiolo J, Chukwulebe B,
et al. Numerical Modeling of Oxide Scale Formation on Low-Carbon Steel Under Reheating Furnace Conditions Using Hydrogen and Natural Gas Air–Fuel and Oxy-Fuel Mixtures. Metals. 2026; 16(5):534.
https://doi.org/10.3390/met16050534
Chicago/Turabian Style
Herrera-Ortega, Mario, Armin K. Silaen, Nicholas J. Walla, Chenn Q. Zhou, Tomas Ekman, Esin Iplik, Rudiger Eichler, Rafat Hirmiz, Joseph Maiolo, Bernard Chukwulebe,
and et al. 2026. "Numerical Modeling of Oxide Scale Formation on Low-Carbon Steel Under Reheating Furnace Conditions Using Hydrogen and Natural Gas Air–Fuel and Oxy-Fuel Mixtures" Metals 16, no. 5: 534.
https://doi.org/10.3390/met16050534
APA Style
Herrera-Ortega, M., Silaen, A. K., Walla, N. J., Zhou, C. Q., Ekman, T., Iplik, E., Eichler, R., Hirmiz, R., Maiolo, J., Chukwulebe, B., Lanzi, O., & Lee, Y.
(2026). Numerical Modeling of Oxide Scale Formation on Low-Carbon Steel Under Reheating Furnace Conditions Using Hydrogen and Natural Gas Air–Fuel and Oxy-Fuel Mixtures. Metals, 16(5), 534.
https://doi.org/10.3390/met16050534