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Corrosion Mechanism of Ladle Furnace Refining Slag to Fired MgO-CaO Bricks 被引量:1

Corrosion Mechanism of Ladle Furnace Refining Slag to Fired MgO-CaO Bricks
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摘要 Corrosion effect of ladle furnace (LF) refining slag on fired MgO-CaO bricks with about 34% CaO was studied by static crucible method,and corrosion mechanism was analyzed by techniques of scan electron micrograph,energy dispersive spectrometer,and X-ray diffraction. The results show that:MgO-CaO bricks exhibit excellent corrosion resistance but poor penetration resistance to LF refining slag; oxidation of (Mg·Fe)O in reaction zone results in volume expansion forming cracks; penetration of 2CaO·Fe2O3 (C2F) from slag to MgO-CaO bricks increases liquid phases which accelerates corrosion of the bricks; a protective layer of 2CaO·SiO2 formed on reaction interface prevents penetration of C2F to the bricks. Corrosion effect of ladle furnace (LF) refining slag on fired MgO-CaO bricks with about 34% CaO was studied by static crucible method,and corrosion mechanism was analyzed by techniques of scan electron micrograph,energy dispersive spectrometer,and X-ray diffraction. The results show that:MgO-CaO bricks exhibit excellent corrosion resistance but poor penetration resistance to LF refining slag; oxidation of (Mg·Fe)O in reaction zone results in volume expansion forming cracks; penetration of 2CaO·Fe2O3 (C2F) from slag to MgO-CaO bricks increases liquid phases which accelerates corrosion of the bricks; a protective layer of 2CaO·SiO2 formed on reaction interface prevents penetration of C2F to the bricks.
出处 《China's Refractories》 CAS 2010年第3期1-4,共4页 中国耐火材料(英文版)
关键词 Ladle furnace PENETRATION Magnesia-calcia brick MICROSTRUCTURE Ladle furnace; Penetration; Magnesia-calcia brick; Microstructure;
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  • 1陈树江.合成镁钙系耐火材料防水化技术及应用研究:[博士学位论文].上海:华东理工大学,2000.

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