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Technical Papers and Discussions - Steelmaking - Direct Oxidation in the Basic Open Hearth Process (Metals Tech., June 1948, T.P. 2380) (with discussion)By E. B. Hughes, F. G. Norris
Oxidation is characteristic of all processes for making steel from pig iron. This thought has been aptly expressed by H. W. Graham13 in the recent Howe Memorial Lecture, "The process of steel-making c
Jan 1, 1949
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Technical Papers and Discussions - Steelmaking - Operation of Oxygen-enriched Open-hearth Furnaces (Metal Tech., August 1948, T.P. 2416) (with discussion)By J. S. Marsh
Joseph Priestley prepared oxygen on Aug. I, 1774, and noted with great surprise "that a candle burned in this air with a remarkable brilliant flame." On Aug. 2, 1774, some ironmaker possibly began to
Jan 1, 1949
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Technical Papers and Discussions - Steelmaking - Operation of Oxygen-enriched Open-hearth Furnaces (Metal Tech., August 1948, T.P. 2416) (with discussion)By J. S. Marsh
Joseph Priestley prepared oxygen on Aug. I, 1774, and noted with great surprise "that a candle burned in this air with a remarkable brilliant flame." On Aug. 2, 1774, some ironmaker possibly began to
Jan 1, 1949
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Technical Papers and Discussions - Steelmaking - Origin of Silicate Inclusions in Basic Electric-arc-furnace Steel of Higher Carbon Contents (Metals Tech., August 1948, T.P. 2418)By Axel Hultgren
In ingots of silicon-killed carbon steel-made without addition of aluminum, transparent spherical or nearly spherical inclusions, up to about 0.15-mm diameter, are generally present. They may be glass
Jan 1, 1949
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Technical Papers and Discussions - Steelmaking - Origin of Silicate Inclusions in Basic Electric-arc-furnace Steel of Higher Carbon Contents (Metals Tech., August 1948, T.P. 2418)By Axel Hultgren
In ingots of silicon-killed carbon steel-made without addition of aluminum, transparent spherical or nearly spherical inclusions, up to about 0.15-mm diameter, are generally present. They may be glass
Jan 1, 1949
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Technical Papers and Discussions - Steelmaking - Oxygen in Basic Electric-furnace Baths (Metals Tech., June 1947, T. P. 2185, with discussion)By S. F. Urban, G. Derge
At the time this investigation was initiated variations were observed in the quality of different heats of basic electric-furnace steels, although they had been made under purportedly similar conditio
Jan 1, 1948
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Technical Papers and Discussions - Steelmaking - Oxygen in Basic Electric-furnace Baths (Metals Tech., June 1947, T. P. 2185, with discussion)By S. F. Urban, G. Derge
At the time this investigation was initiated variations were observed in the quality of different heats of basic electric-furnace steels, although they had been made under purportedly similar conditio
Jan 1, 1948
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Technical Papers and Discussions - Steelmaking - Oxygen in Liquid Open-hearth Steel-Effect of Special Additions, Stirring Methods and Tapping (Metals Tech., Oct. 1946, T. P. 2076, with discussion)By B. M. Larsen, T. E. Brower
In two previous paperslJ dealing with the carbon-oxygcn reaction, and the simultaneous content of each, in liquid steel in the furnace, we have made use of the quantity A[O], defined as the excess oxy
Jan 1, 1948
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Technical Papers and Discussions - Steelmaking - Oxygen in Liquid Open-hearth Steel-Effect of Special Additions, Stirring Methods and Tapping (Metals Tech., Oct. 1946, T. P. 2076, with discussion)By B. M. Larsen, T. E. Brower
In two previous paperslJ dealing with the carbon-oxygcn reaction, and the simultaneous content of each, in liquid steel in the furnace, we have made use of the quantity A[O], defined as the excess oxy
Jan 1, 1948
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Technical Papers and Discussions - Steelmaking - Oxygen in Liquid Open-hearth Steel-Oxygen Content during the Refining Period (Metals Tech., Sept. 1946, T. P. 2035, with discussion)By B. M. Larsen, T. E. Brower
In an earlier paper1 we discussed a simple, rapid method of taking samples of liquid steel and analyzing them for oxygen, which, though possibly not absolutely accurate (as is likewise true of all oth
Jan 1, 1948
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Technical Papers and Discussions - Steelmaking - Oxygen in Liquid Open-hearth Steel-Oxygen Content during the Refining Period (Metals Tech., Sept. 1946, T. P. 2035, with discussion)By B. M. Larsen, T. E. Brower
In an earlier paper1 we discussed a simple, rapid method of taking samples of liquid steel and analyzing them for oxygen, which, though possibly not absolutely accurate (as is likewise true of all oth
Jan 1, 1948
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Technical Papers and Discussions - Steelmaking - Role of Thermochemical Factors in Basic Open Hearth Production Rate (Metals Tech., October 1948 T.P. 2451)By B. M. Larsen, T. E. Brower
Introduction and Summary By "thermochemical factors" we refer to those variables which affect the net heat which must be put into the bath in order to make a heat of steel from any given set of charge
Jan 1, 1949
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Technical Papers and Discussions - Steelmaking - Role of Thermochemical Factors in Basic Open Hearth Production Rate (Metals Tech., October 1948 T.P. 2451)By B. M. Larsen, T. E. Brower
Introduction and Summary By "thermochemical factors" we refer to those variables which affect the net heat which must be put into the bath in order to make a heat of steel from any given set of charge
Jan 1, 1949
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Technical Papers and Discussions - Steelmaking - Structure, Segregation and Solidification of Semikilled Steel Ingots (Metals Tech., September 1947, T.P. 2273) (with discussion)By Michael Tenenbaum
The importance of semikilled steel as a high tonnage grade has long been recognized. The increasing severity of the applications for which semikilled steel is used makes it desirable to obtain further
Jan 1, 1949
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Technical Papers and Discussions - Steelmaking - Structure, Segregation and Solidification of Semikilled Steel Ingots (Metals Tech., September 1947, T.P. 2273) (with discussion)By Michael Tenenbaum
The importance of semikilled steel as a high tonnage grade has long been recognized. The increasing severity of the applications for which semikilled steel is used makes it desirable to obtain further
Jan 1, 1949
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Technical Papers and Discussions - Steelmaking - Sulphur Equilibria between Liquid Iron and Slags (Metals Tech., April 1946, T. P. 1988 with discussion)By Nicholas J. Grant, John Chipman
A full understanding of the behavior of sulphur in the basic open-hearth process has been delayed by lack of dependable data covering a wide range of slag conditions in the absence of other complicati
Jan 1, 1947
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Technical Papers and Discussions - Steelmaking - Sulphur Equilibria between Liquid Iron and Slags (Metals Tech., April 1946, T. P. 1988 with discussion)By Nicholas J. Grant, John Chipman
A full understanding of the behavior of sulphur in the basic open-hearth process has been delayed by lack of dependable data covering a wide range of slag conditions in the absence of other complicati
Jan 1, 1947
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Technical Papers and Discussions - Steelmaking - The Boron-oxygen Equilibrium in Liquid Iron (Metals Tech., Aug. 1946, T. P. 2004, with discussion)By Gerhard Derge
Metallurgists have used borax as a fluxing agent traditionally, but until recently elemental boron has played an insignificant role as an alloying element. Neither the metal nor its compounds have bee
Jan 1, 1947
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Technical Papers and Discussions - Steelmaking - The Boron-oxygen Equilibrium in Liquid Iron (Metals Tech., Aug. 1946, T. P. 2004, with discussion)By Gerhard Derge
Metallurgists have used borax as a fluxing agent traditionally, but until recently elemental boron has played an insignificant role as an alloying element. Neither the metal nor its compounds have bee
Jan 1, 1947
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Technical Papers and Discussions - Steelmaking - The Mechanism of the Carbon-oxygen Reaction in Steelmaking (Metals Tech., Jan. 1947, T. P. 2129, with discussion)By C. E. Sims
The carbon-oxygen reaction without doubt is the basic reaction in steelmaking. It is important on several counts: In the first place, carbon is the element that distinguishes steel from iron. It is th
Jan 1, 1948