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Iron and Steel Division - Evaluation of Methods for Determining Hydrogen in SteelBy J. F. Martin, L. M. Melnick, R. Rapp, R. C. Takacs
Recent studies on the determination of hydrogen in steel have shown that the hot-extraction method for removing hydrogen from a solid sample is preferable to its removal from a molten sample by vacuum
Jan 1, 1964
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Iron and Steel Division - Evaluation of pH Measurements with Regard to the Basicity of Metallurgical SlagBy C. W. Sherman, N. J. Grant
The correlation of the high temperature chemical properties of slag-metal systems with some easily measured property of either slag or metal at room temperature has been the goal of both process metal
Jan 1, 1950
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Iron and Steel Division - Graphical Techniques for Adiabatic Staged SystemsBy F. C. Schora, H. P. Meissner
Both a graphical and an analytical technique are presented for calculating stream compositions and temperatures in adiabatic staged systems in which solids travel countercurrently to a gas stream. Suc
Jan 1, 1962
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Iron and Steel Division - Investigation of Bessemer Converter Smoke ControlBy A. R. Orban, R. B. Engdahl, J. D. Hummell
The initial phase of a research program on smoke abatement from Bessemer converters is described. In work sponsored by the American Iron and Steel Institute, a 300-lb experimental Bessemer converter w
Jan 1, 1961
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Iron and Steel Division - Kinetic and Equilibrium Considerations for Silicon Reaction between Silicate Melts and Graphite-Saturated Iron, Part II: Reaction Kinetics of Silica ReductionBy E. T. Turkdogan, P. Grieveson, J. F. Beisler
Experimental results are given for the rate of reduction of silica from silicate melts by paphite-saturated iron in the presence of carbon monoxide. It is shown that, when gas bubbles are present at t
Jan 1, 1963
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Iron and Steel Division - Kinetics of Sulfur Reaction in Oxide Melt-Gas SystemsBy E. T. Turkdogan, M. L. Pearce
The rates of sulfurization and desulfurization of calcium aluminate, silicate, and ferrite melts by CO + CO2 + SO2 mixtures at 1550°C are reported. It is shown that for melts 10 to 15 mm deep transpor
Jan 1, 1963
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Iron and Steel Division - Manganese as an Indicator of Blast Furnace Slag Oxidation and Desulphurizing PowerBy R. J. Murphy, N. J. Grant, J. W. Dowding
A large number of blast furnace slag-metal tests were examined to determine if the manganese reduction could be used as a primary indicator of the degree of oxidation or reduction of the slag and of i
Jan 1, 1954
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Iron and Steel Division - Optical Temperature Measurements for Liquid IronBy d&apos, John C. Entremont
Pure iron was inductively melted in small refractory crucibles and optical pyrometer and immersion thermocouple readings were simultmzeously taken. The resulting emissivities of the liquid iron surfac
Jan 1, 1963
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Iron and Steel Division - Physical Conditions in the Combustion and Smelting Zones of A Blast FurnaceBy J. B. Wagstaff, R. A. Buchanan, J. F. Elliott
High speed photography through blast-furnace tuyeres showed coke particles moving rapidly. Model studies showed a raceway was formed and gave quantitative results which were correlated with actual bla
Jan 1, 1953
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Iron and Steel Division - Prediction of the Solubility of Nitrogen in Molten SteelBy Donald A. Corrigan, John Chipman
It is shown that the heat of solution of nitrogen in liquid-iron alloys is Proportional to the interaction coefficient. This proportionality forms the basis for a method of predicting nilrogen solubil
Jan 1, 1965
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Iron and Steel Division - Silicon-Oxygen Equilibrium in Liquid IronBy 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 - Solid Phase Identification in Partially Reduced Iron OreBy 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 - 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 - Solution Loss and Reducing Power of Blast Furnace Gas - DiscussionBy T. L. Joseph
S. T. Killian (Johnstown, Pa.)—This is one of the finest papers I have read. Tying in stoichiometric calculations with furnace performance and practice is a step which had to be taken sooner or later.
Jan 1, 1952
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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 - Steelmaking Processes-Some Future Prospects (Howe Memorial Lecture, 1954)By C. D. King
DURING the 30-year period spanned by these annual Howe Memorial presentations, many lecturers could proudly claim a kinship either as a student or an associate of the man whose memory we honor. Althou
Jan 1, 1955
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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 - 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 - The Interaction of Liquid Steel with Ladle RefractoriesBy C. B. Post, G. V. Luerssen
It is generally recognized that non-metallic inclusions in steel come from two principal sources. First are the chemical reactions in the furnace, or in subsequent deoxidation, resulting in slag which
Jan 1, 1950