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Alumina From Clay By The Lime-Sinter Method IIBy F. R. Archibald, C. M. Nicholson
THE present paper may be considered complementary to an earlier contribution on the same subject by F. R. Archibald and C. F. Jackson.1 It is particularly concerned with engineering and technological
Jan 1, 1948
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Manganese in Non-ferrous Alloys (742c943c-f782-4522-95ef-3ffcccc42560)By M. G. Corson
INFORMATION regarding the use of manganese alloys has hitherto been incomplete and available only from widely scattered sources. This paper attempts a systematic description of properties .and uses of
Jan 1, 1927
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Discussions included in Volume 184C. W. MERRILL*—Mr. Hughes' paper not only is very well presented but is most timely in that it covers a subject of vital interest to the United States. Tin is one of the strategic metals which ha
Jan 1, 1950
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Minerals Beneficiation - Improved Process for Making Prereduced Iron Ore Pellets, AnBy R. B. Schluter, M. M. Fine
Processes for manufacturing prereduced pellets have heretofore required temperatures of 2100°F or higher. Sulfides will accelerate the liquid-phase sintering of metallic iron, yet do not deter the red
Jan 1, 1970
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Institute of Metals Division - The Extrusion of Powdered Magnesium Alloys (Correction, p. 944)By T. E. Leontis, R. S. Busk
WORK was initiated several years ago at The Dow Chemical Company to determine the applicability of powder metallurgy processes to magnesium and its alloys. Although it was found possible to apply the
Jan 1, 1951
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Aluminum-silicon-magnesium Casting AlloysBy R. S. Archer
THE binary aluminum-silicon alloys have certain characteristic advantages which are now well known, and these alloys have come into considerable use during the past several years.1 Their field of appl
Jan 1, 1930
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Institute of Metals Division - Critical Particle Size for Precipitation HardeningBy J. D. Livingston
THE hardening of alloys by the precipitation of a second phase has long been an important technological process. One approach towards improving our understanding of this phenomenon has been a correla
Jan 1, 1960
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Some Mechanical And Metallurgical Aspects Of Present-Day Oil-Production Equipment (ea525c0b-ad16-496b-97c1-bcc48222bb86)By Albert Zima
ACCORDING to recently published statistics, it is predicted that as much oil must be produced during the next 16 years as has been produced during the past 75, in order to satisfy the high rate of con
Jan 1, 1935
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Studies Upon The Widmanstätten, Structure VIII ? The Gamma-Alpha Transformation In Iron-Nickel AlloysBy Robert F. Mehl
THE gamma-alpha transformation in iron and iron-rich alloys is of such practical and theoretical importance that many papers have been published upon the subject relating to critical temperatures, tra
Jan 1, 1937
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The Economics of Coal Preparation (1d76dca8-f7a4-4e09-82ee-524b690bf736)By Kenneth K. Humphreys, F. R. Zachar, A. G. Gilbert
INTRODUCTION by F. R. ZACHAR and A. G. GILBERT Coal producers are not only faced with the problems of mining coal, but must also decide to what extent they can invest capital and what operatin
Jan 1, 1968
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Papers - Mechanical Properties - Influence of Hydrogen on Mechanical Properties of Some Low-carbon Manganese-iron Alloys and on Hadfield Manganese Steel (Metals Technology, June 1944) (With discussion)By Herbert H. Uhlig
Although the mechanical properties of high-carbon manganese-iron alloys, particularly the Hadfield manganese steels, have been established, the literature discloses discrepancies in the reported prope
Jan 1, 1944
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Minerals Beneficiation - Heavy Liquid Recovery Systems in Mineral BeneficiationBy E. C. Tveter, R. B. Tippin
The separation of minerals by heavy liquids is a standard laboratory technique which goes back at least 50 years, but commercially economic application of this principal to ore concenfration has been
Jan 1, 1969
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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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Petroleum - Mining Petroleum in France and GermanyBy G. S. Rice, J. A. Davis
The Péchelbronn oil field is located in the province of Alsace, in the Rhine Valley, about 30 miles north of Strasbourg. It is approximately 4 miles wide and 12 miles long, extending from the villages
Jan 1, 1927
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Concentration Of Iron Ores In The United StatesBy T. B. Counselman
PROBABLY the earliest concentration of iron ore in this country was carried on in the northeastern magnetite areas. Magnetic concentration was relatively simple and gave a concentrate that, after aggl
Jan 1, 1943
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Gas Injection at Loudon, IllinoisBy R. J. Sullivan
DURING the past twelve months the Loudon pool of the Eastern Interior Coal Basin has become established as one of the two largest discoveries since the revival of exploitation in the Illinois region a
Jan 1, 1940
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Papers - Corrosion Studies of Magnesium and Its Alloys (T .P. 1353, with discussion)By J. D. Hanawalt, C. E. Nelson, J. A. Peloubet
The subject of the salt-water corrosion resistance of magnesium alloys is somewhat like that of the pitting of stainless steels, in that it involves a relatively small. percentage of the applications
Jan 1, 1942
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Some Examples of Stress-Corrosion Cracking of Austenitic Stainless SteelBy O. B. Ellis
Although thousands of tons of stainless steel have been used successfully for many types of equipment, there have been few cases of failures due to the phenomenon described as stress corrosion crackin
Jan 1, 1945
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Logging and Log Interpretation - An Experimental Study on the Influence of the Chemical Composition of Electrolytes on the SP CurveBy M. P. Tixier, M. Gondouin, G. L. Simard
In the quantitative interpretation of the SP logs, the electrochemical component is generally taken equal to — K log Rm /Rw where K has the theoretical value corresponding to solutions of pure sodium
Jan 1, 1958
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Past Progress Of Mineral Industry EducationBy L. E. Young
THE progress of mineral industry education will be limited to the period prior to World War II and will be considered as primarily a division of engineering education. Its relation to progress in the
Jan 1, 1947