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Iron and Steel Division - Self-Diffusion of Iron in Molten Fe-C AlloysBy 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 - Silicon-Oxygen Equilibrium in Liquid Iron - DiscussionBy 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 RevisionBy 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 MagnetiteBy 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 - Solid State Diffusion in the Reduction of MagnetiteBy 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 Hydrogen in Liquid Iron AlloysBy 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 KineticsBy 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 Manganese (TN)By Nev A. Gokcen
PUBLISHED data on the solubility of nitrogen in liquid manganese are widely discordant. Ochsenfeldl observed that a Mn-N alloy with 3.6 pct N consisted of solid and liquid phases at 1260°C but at 13 0
Jan 1, 1962
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Iron and Steel Division - Some Aspects Of Hardenable Alloy SteelsBy Herbert J. French
Herbert 1. French (Member 1934), vice president of the International Nickel Co. Inc., assistant vice president of the International Nickel Co. of Canada Ltd., and AIME Howe Memorial Lecturer for 1956,
Jan 1, 1957
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Iron and Steel Division - Some Effects of Hot Strip Mill Rolling Temperatures on Properties of Low Carbon Sheet CoilsBy D. T. Goettge, E. L. Robinson
The phase changes occurring in low carbon steel during hot strip mill rolling are shown to be metallurgically significant when related to commonly used temperature control points, particularly finishi
Jan 1, 1957
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Iron and Steel Division - Some Factors Affecting Open-Hearth PerformanceBy D. J. Carney, E. Van Meter, J. J. Oravec
A study was made of combustion-air temperatures and factors affecting air temperatures in the open-hearth regenerative systems. Air-temperature surveys in the regenerative system revealed marked therm
Jan 1, 1956
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Iron and Steel Division - Stress and Strain States in Elliptical BulgeBy G. Sachs, A. W. Dana, C. C. Chow
A great number of the investigations on the plastic flow of metals have been concerned with the establishment of a "universal" stress-strain relation. In such a relation some stress function when plot
Jan 1, 1950
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Iron and Steel Division - Structure and Transport in Lime-Silica-Alumina Melts (TN)By John Henderson
FOR some time now the most commonly accepted description of liquid silicate structure has been the "discrete ion" theory, proposed originally by Bockris and owe.' This theory is that when cert
Jan 1, 1963
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Iron and Steel Division - Sulfide Inclusions in Steel, LawrenceBy J. M. Dahl, R. J. Warrick, O. K. Riegger, H. Van Vlack
A liquid which is rich in oxygen (and silicon) develops at steel rolling temperatures in resulfurized and plain-carbon steels. This liquid fluxes solid manganese sulfide. The composition of the liq
Jan 1, 1962
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Iron and Steel Division - Sulfur Equilibria Between Gases and Calcium Ferrite MeltsBy E. T. Turkdogan, L. S. Darken
Calcium ferrite melts were equilibrated with sulfur and oxygen-bearing gases at temperatures within the range 1290°C to 1620°C. The results show that at oxygen partial pressures below 10-4 atm the su
Jan 1, 1962
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Iron and Steel Division - Sulphur Equilibria between Iron Blast Furnace Slags and Metal - DiscussionBy J. Chipman, G. G. Hatch
T. ROSENQVIST*—It is a pleasure to see the excellent way in which the experimental part of this work has been handled. There seems to be little doubt that the distribution data obtained corresponds mo
Jan 1, 1950
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Iron and Steel Division - Surface Structure of Nonoxidizing Slags Containing SulphurBy R. E. Boni, G. Derge
Application of surface tension measurements has been made to molten silicates in order to determine the effect of sulphur upon the surface tensions of synthetic blast furnace slags. In melts with the
Jan 1, 1957
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Iron and Steel Division - Surface Tensions and Surface Adsorptions in Liquid Iron- Carbon Alloys: the Systems Fe-C-Ni and Fe-C-CoBy T. J. Whalen, S. M. Kaufman
Surface-tension measurements for liquid Fe-C-Co and Fe-C-Ni alloys were performed by the sesszle-drop technique at 1350o and 1425°C. Cobalt was shown to he more effective than nickel in lowering the
Jan 1, 1964
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Iron and Steel Division - The Activity of Sulphur in Liquid Steel: The Influence of Copper (With Discussion)By E. M. Cox, T. Rosenqvist
IN a recent investigation, carried out at the Institute for the Study of Metals, the affinity of sul-phur for iron, copper, and manganese was studied over the temperature range 700" to 1300°C.' I
Jan 1, 1951
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Iron and Steel Division - The Analysis and Solubility of Nitrogen in Silicon-IronBy M. L. Pearce
A comparison of the isotope-dilution, vacuum-fusion, and chemical methods of analysis for nitrogen in Si-Fe is made with particular emphasis on the effect of sample history. The superiority of the is
Jan 1, 1963