Engineering

Engineering

ISSN Print: 1947-3931
ISSN Online: 1947-394X
www.scirp.org/journal/eng
E-mail: eng@scirp.org
"The Effects of an Applied Voltage on the Corrosion Characteristics of Dense MgO"
written by Brian Joseph Monaghan, Sharon April Nightingale, Qiang Dong, Michael Funcik,
published by Engineering, Vol.2 No.7, 2010
has been cited by the following article(s):
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[1] Wetting and corrosion behavior between magnesia–carbon refractory and converter slags with different MgO contents
Journal of Iron and Steel …, 2022
[2] Effect of applied voltage on wetting and corrosion of corundum refractory by CaO–SiO2–MgO molten slag
Ceramics International, 2022
[3] Research on the wetting and corrosion behavior between converter slag with different alkalinity and MgO-C refractories
Oxidation of Metals, 2022
[4] Slag corrosion between the mold flux and the submerged entry nozzle controlled by an external electric field
Journal of the European …, 2022
[5] Investigation of the erosion mechanism of the mold flux containing rare earth oxide on the submerged entry nozzle affected by an external electric field
steel research …, 2022
[6] Improving the erosion resistance of the submerged entry nozzle by applying an external electric field
Ceramics …, 2022
[7] Controlling the electric field characteristics to suppress the clogging and corrosion of the continuous casting nozzle
2021
[8] Influence of interface electric field on interaction between molten iron and refractory interface
2020
[9] Influence of Interface Electric Field on Wettability Between Molten Iron and Submerged Entry Nozzle Interface
2020
[10] The effect of applied voltage on the corrosion resistance of MgO–C refractories
Journal of Materials Science, 2019
[11] Induced Electro-Deposition of High Melting-Point Phases on MgO–C Refractory in CaO–Al2O3–SiO2–(MgO) Slag at 1773 K
High Temperature Materials and Processes, 2019
[12] Wetting, spreading and corrosion behavior of molten slag on dense MgO and MgO-C refractory
Ceramics International, 2018
[13] 外加电势条件下 MgO–C 耐火材料表面的电沉积行为
2017
[14] 国家自然科学基金 (51604179, 51674172); 江苏省自然科学基金 (BK20140346) 资助.
2017
[15] Effect of Applied Voltage on Electroreduction with Controlled Oxygen Flow of Molten Slag Containing FeO at 1723 K
ISIJ International, 2015
[16] Effect of Basicity on Electroreduction with Controlled Oxygen Flow of Molten Slag Containing FeO
Journal of Sustainable Metallurgy, 2015
[17] NUMERICAL AND EXPERIMENTAL STUDY OF MARANGONI FLOW ON SLAG-LINE DISSOLUTION OF REFRACTORY
2012
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