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- W3119397789 abstract "Low-temperature oxidation of MgO-C refractory materials is one of the factors influencing the length of service of a steel ladle. Oxidation occurs during the ladle’s operation at temperatures below 1200 °C, in the periods when it is kept on standby. At this time, the required temperature of the working lining is maintained, and the mixture of oxy- gen-containing gases inside the ladle has a corrosive effect on the carbon part of the refractory materials. Investiga- tions of decarburization were conducted on mechanically formed shapes made of a selected magnesia-carbon material with a composition typical for applications in ladle slag zones. The material’s resistance to low-temperature oxidation was tested in resistance furnaces versus time, temperature, and moulding pressure, which determines the open porosity of the shapes’ material. In the investigations, two flake graphites, differing in grain size distribution and cleanness, were used. The tests were carried out according to a three-level full factorial design type 3S, which enables conducting a statistical analysis of the nonlinear substitute characteristics of the material’s resistance to low-temperature oxidation. The obtained results allow evaluating the effect of temperature, time, and open porosity on the process of material’s low-temperature oxidation. The results of work can provide a practical indication for steel ladle users." @default.
- W3119397789 created "2021-01-18" @default.
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- W3119397789 date "2020-06-25" @default.
- W3119397789 modified "2023-09-27" @default.
- W3119397789 title "Practical aspects of low-temperature oxidation of MgO–C refractories" @default.
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