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Iron and Steel Division - Results of Treating Iron with Sodium Sulfite to Remove Copper (TN)
By A. Simkovich, R. W. Lindsay
The possibility of using sodium sulfide slags to remove copper from ferrous alloys has been investigated by Jordan1 and by Langenberg.2, 3 In these studies, such slags were determined to be capable of
Jan 1, 1961
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Iron and Steel Division - Sampling Liquid Steel for Oxygen Content: A Further Evaluation of the Bomb Technique
By S. Gilbert, G. R. Bailey
A further evaluation of the bomb-sampling method for determining the oxygen content of liquid steel is presented. The results of this study and their close agreement with the results of an earlier eva
Jan 1, 1955
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Iron and Steel Division - Sampling of Liquid Steel for Dissolved Oxygen (With Discussion)
By G. F. Huff, G. R. Bailey, J. H. Richards
An improved bomb-sampling technique for obtaining samples for oxygen analysis from liquid steel is described. Analyses of samples taken from open-hearth furnaces by the improved method show sufficient
Jan 1, 1953
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Iron and Steel Division - Self-Diffusion of Aluminum in CaO-SiO2-A12O3 Melts
By G. Derge, Ling Yang, John Henderson
Self-diffusion coefficients of aluminum have been measured by the capillary reservoir technique in liquids of the CaO-SiO2-Al2O3 system containirg equimolar portions of CaO and SiO2, in the temperat
Jan 1, 1962
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Iron and Steel Division - Self-Diffusion of Iron in Molten Fe-C Alloys
By M. T. Simnad, G. Derge, Ling Yang
STUDY of diffusion in molten substances is important in at least two respects. Diffusion data, combined with thermodynamic and kinetic information, throw light on the structure of the liquid state. Mo
Jan 1, 1957
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Iron and Steel Division - Side-blow Converter Process for the Production of Low Nitrogen Steel Ingots
By R. R. Webster, H. T. Clark
The side-blown converter has been investigated as a possible commercial process for the production of low nitrogen steel. During this work, two converters of 3-ton and 22-ton capacity were opera
Jan 1, 1951
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Iron and Steel Division - Side-blow Converter Process for the Production of Low Nitrogen Steel Ingots - Discussion
By R. R. Webster, H. T. Clark
I. A. Sirel—I would like to ask Mr. Sims what would the preferred hot metal analysis be as far as manganese and silicon are concerned if you used specially made iron for this process instead of basic
Jan 1, 1951
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Iron and Steel Division - Silicon-Oxygen Equilibrium in Liquid Iron
By N. A. Gokcen, John Chipman
SILICON is the most commonly used deoxidizer and an important alloying element in steelmak-ing; hence a detailed study of this element in liquid iron containing oxygen is of considerable interest. The
Jan 1, 1953
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Iron and Steel Division - Silicon-Oxygen Equilibrium in Liquid Iron - Discussion
By N. A. Gokcen, John Chipman
D. C. Hilty (Union Carbide and Carbon Research Laboratories, Niagara Falls, N. Y.)—This paper is a very nicely detailed analysis of a difficult problem. I would like to point out that the results that
Jan 1, 1953
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Iron and Steel Division - Silicon-Oxygen Equilibrium in Liquid Iron-A Revision
By N. A. Gokcen, J. Chipman
A revised treatment of the authors' published data eliminates the complex relation previously proposed between concentration of silicon and activity coefficient of oxygen in liquid iron. Revised
Jan 1, 1954
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Iron and Steel Division - Sintering Characteristics of Minus Sixty-five and Twenty Mesh Magnetite
By A. Stanley, J. C. Mead
The MacIntyre Development of the National Lead Co. is located at Tahawus, N. Y. The operations involve the mining and concentrating of a titaniferous iron ore to produce an ilmenite concentrate and a
Jan 1, 1950
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Iron and Steel Division - Sintering Characteristics of Minus Sixty-five and Twenty Mesh Magnetite - Discussion
By A. Stanley, J. C. Mead
E. H. ROSE*—You have wrapped up a great deal of new and interesting information in one quite compact package, and I wonder if it might not help the
Jan 1, 1950
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Iron and Steel Division - Sintering Investigations with Preagglomerated Burdens
By C. A. O’Malley, F. W. Kinsey
This paper deals with an experimental study in the use of a preagglomerated burden as a means of increasing the production of sinter. The effect of a wide range of sinter burden was studied, including
Jan 1, 1960
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Iron and Steel Division - Slag-Metal-Graphite Reactions and the Activity of Silica in Lime-Alumina-Silica Slags
By J. Chipman, J. C. Fulton
Reduction of silicon from blast-furnace-type slags by carbon-saturated iron is a very slow reaction even under conditions of rapid stirring. Equilibrium under atmospheric pressure of carbon monoxide w
Jan 1, 1955
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Iron and Steel Division - Solid Phase Identification in Partially Reduced Iron Ore
By G. Britsianes, T. L. Joseph
THE reduction of a lump of iron ore is a complicated sequence of up to three reactions proceeding simultaneously in a gas-solid system. As the ore moves down the blast furnace into zones of higher tem
Jan 1, 1954
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Iron and Steel Division - Solid State Diffusion in the Reduction of Magnetite
By J. O. Edstrom, G. Bitsianes
Parabolic rate constants were determined for the formation of wiistite by the solid state reaction between magnetite and iron. The reaction was diffusion controlled and inert marker studies indicated
Jan 1, 1956
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Iron and Steel Division - Solubility of Carbon in Iron Sulfur Melts (TN)
By N. A. Gokeen, M. Ohtani
EFFECT of elements on the solubility of carbon in liquid iron is useful in calculating and correlating a number of thermodynamic properties as shown elsewhere in detail.' Kitchener, Bockris, and
Jan 1, 1961
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Iron and Steel Division - Solubility of Hydrogen in Liquid Iron Alloys
By John F. Elliott, Martin Weinstein
The solubility of hydrogen in liquid Pure iron and in a number of liquid binary iron alloys has been measured in a Sieverts'-type apparatus. Sieverts' law is obeyed in all alloys studied UP
Jan 1, 1963
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Iron and Steel Division - Solubility of Nitrogen in Liquid Iron Alloys II Kinetics
By John F. Elliott, Robert D. Pehlke
The rate of reaction of nitrogen with liquid iron and with binary alloys of iron and Al, Cb, Cr, Ni, O, S, Si, and W were measured. The surface active elements, oxygen and sulfur, decrease the rate
Jan 1, 1963
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Iron and Steel Division - Solubility of Nitrogen in Liquid Iron Alloys. 1. Thermodynamics
By R. D. Pehke, J. F. Elliott
The solubility of nitrogen in liquid pure iron has been measured as a function of pressure and temperature. Sieverts' Law is obeyed at all pressures up to 1 atm and the temperature coefficient of
Jan 1, 1961