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Iron and Steel Division - The Chromium Oxide-Silica System at Low Oxygen PressuresBy G. W. Healy, J. C. Schottmiller
Molten silicates were found to exist in the Cr-Si-0 system at temperatures above 1450°C. one atom of oxygen is readily removed from CrzOs in the presence of Si02 at 1700°C, forming a silicate melt. St
Jan 1, 1964
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Iron and Steel Division - The Columbium-Oxygen EquilibriumBy Michel Elle, John Chipman
The equilibrium of gaseous H20-H2 mixtures with liquid iron-columbium alloys in the range 0.2 to 2.4 pct Cb shows that the activity coefficient of oxygen is strongly diminished by Cb. The oxide in equ
Jan 1, 1962
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Iron and Steel Division - The Density of Liquid Iron from the Melting Point to 2500°KBy J. A. Cahill, A. D. Kirshenbaum
Using an alumina or zirconia crucible with an alumina sinker or a molybdenum sinker coated with zirconium dioxide, the density of liquid iron was determined by the immersed-sinker method over the temp
Jan 1, 1962
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Iron and Steel Division - The Effect of Oxygen Pressure on the Solubility of Water in Slags Containing Iron Oxide (TN)By J. M. Uys, T. B. King
WalSH, Chipman, King, and rant' have measured the water content (as hydrogen) of actual steel-making slags. An average water content of 290 ppm was found for basic open-hearth tapping slags an
Jan 1, 1963
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Iron and Steel Division - The Effect of Phosphorus on the Deformation and Fracture Characteristics of Iron From 1600° to 2200°FBy Nicholas J. Grant, Rolf Nordheim, Thomas B. King
Constant-load creep-rupture tests were conducted in an argon atmosphere at temperatures of 1600 to 2200°F on two heats of iron containing about 0.06 and 0.09 pct P in solid solution. The tests were co
Jan 1, 1961
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Iron and Steel Division - The General Rate Equation for Gas-Solid Reactions in Metallurgical ProcessesBy Wei-Kao Lu
A general rate equation is derived for gas -solid reactions in metallurgical processes by considering the contributions of chemical reaction at inter-phase boundaries and diffusion through the solid p
Jan 1, 1963
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Iron and Steel Division - The Influence of the Rate of Deformation on the Tensile Properties of Some Plain Carbon Sheet Steels (Howe Memorial Lecture, 1963)By J. Winlock
To have been chosen by you to give the Howe Memorial Lecture is the greatest honor I have ever had and I should like to have you know that I appreciate it deeply. Many years ago I had the privilege
Jan 1, 1954
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Iron and Steel Division - The Ionic Nature of Metallurgical Slags. Simple Oxide SystemsBy Lo-Ching Chang, J. Chipman
The perennial and increasing interest in the chemical behavior of steelmaking slags has led to numerous attempts to formulate the thermodynamic properties of these solutions. The classical view is tha
Jan 1, 1950
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Iron and Steel Division - The Ionic Nature of Metallurgical Slags. Simple Oxide Systems - DiscussionBy Lo-Ching Chang, J. Chipman
C. B. POST*—Just what are you showing that has not been shown by fixing the attention on molecular species and choosing the molecular species to give you a perfect solution? J. CHIPMAN (authors&apo
Jan 1, 1950
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Iron and Steel Division - The Manganese Equilibrium Under Simple Oxide SlagsBy J. Chipman, J. B. Gero, T. B. Winkler
IN the basic open hearth process the reaction of manganese in the bath with iron oxide in the slag attains a condition very closely approximating true equilibrium, and the distribution of manganese be
Jan 1, 1951
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Iron and Steel Division - The Mechanism of Iron Oxide ReductionBy B. B. L. Seth, H. U. Ross
A generalized rate equation for the reduction of iron oxide was derived from which two particular equations were obtained: one for rate controlled by the transportation of gas, the other for rate cont
Jan 1, 1965
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Iron and Steel Division - The Mechanism of Sulphur Transfer between Carbon-Saturated Iron and CaO-SiO2-Al2O3 SlagsBy W. O. Philbrook, K. M. Goldman, G. Derge
EQUILIBRIUM conditions for steelmaking reactions have been studied extensively over the past two decades by a .number of investigators, with gratifying results. Equilibrium data are essential to the u
Jan 1, 1951
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Iron and Steel Division - The Mechanism of Sulphur Transfer between Carbon-Saturated Iron and CaO-SiO2-Al2O3 Slags - DiscussionBy W. O. Philbrook, K. M. Goldman, G. Derge
T. Rosenqvist—The most interesting point in this paper is the observed transfer of iron into the slag in the initial stage of the desulphurization process, after which the iron again is reduced to the
Jan 1, 1951
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Iron and Steel Division - The Microstructures of Periclase when Subjected to Steelmaking VariablesBy Lawrence H. Van Vlack, Otto K. Riegger, Gerald I. Madden
The microstructural variations of periclase (MgO) in the presence of oxide liquids are examined under the steelmaking variables of: 1) temperature, 2) liquid composition, and 3) FeO additions under di
Jan 1, 1963
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Iron and Steel Division - The Reaction of Silica with Carbon in Liquid IronBy Tasuku Fuwa, John Chipman, David H. Kirkwood
Fe-C-Si alloys in silica crucibles were held at 1600°C in a controlled atmosphere of CO and Co2 and the approach to equilibrium was obsertsed. Results were not of sufficient precision to establish the
Jan 1, 1965
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Iron and Steel Division - The Reduction of Silica in Blast-Furnace Slag-Metal SystemsBy John F. Elliott, John R. Rawling
The rate of reduction of silica to silicon by carbon at 1550° to 1700°C in iron blast-furnace type slag-metal systems has been investigated. In the tower portion of the temperature range oxygen transp
Jan 1, 1965
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Iron and Steel Division - The Sampling and Analysis of Liquid Steel for HydrogenBy D. J. Carney, J. Chipman, N. J. Grant
An absolute calibration has been achieved for sampling and analyzing liquid steel for hydrogen based on Sieverts' values of hydrogen solubility in iron. Further checks were made in nickel, iron-n
Jan 1, 1951
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Iron and Steel Division - The Sampling and Analysis of Liquid Steel for Hydrogen - DiscussionBy D. J. Carney, J. Chipman, N. J. Grant
G. Derge—With the development of this last weapon, there is not much of a chance for hydrogen. It is certainly a very interesting paper, and it gives us more confidence in sampling liquid steel for hy
Jan 1, 1951
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Iron and Steel Division - The Solubility of Hydrogen and Nitrogen in Liquid Alloys of Iron, Nickel, and CoboltBy T. Busch, R. A. Dodd
The solubility of hydrogen in pure iron and pure nickel, and of nitrogen in pure iron, has been determined and agrees well with earlier data. Nitrogen is insoluble in pure nickel and cobalt. The s
Jan 1, 1961
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Iron and Steel Division - The Solubility of Nitrogen and the Precipitation of Vanadium Nitride in Liquid Iron-Vanadium AlloysBy N. A. D. Parlee, N. M. El Tayeb
Fe-V alloys with small percentages of vanadium show no deviations from Sieverts' Law up to P~, = 1 atm in the 1600º to 1750ºC region. At somewhat under 8 pct V and up to at least 20pct V, at 1604
Jan 1, 1963