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  • AIME
    Steelmaking -The Cause of Bleeding in Ferrous Castings (Metals Technology, October

    By C.A. Zapffe

    Both the foundryman and the theoretical metallurgist are now generally agreed that the anomalous "rising" or "bleeding" of certain ferrous castings of killed metal is primarily attributable to hydroge

    Jan 1, 1943

  • AIME
    Steelmaking -The Cause of Bleeding in Ferrous Castings (Metals Technology, October

    By C. A. Zapffe

    Both the foundryman and the theoretical metallurgist are now generally agreed that the anomalous "rising" or "bleeding" of certain ferrous castings of killed metal is primarily attributable to hydroge

    Jan 1, 1943

  • AIME
    Papers - Flotation - Study of Differential Flotation (With Discussion)

    By C. R. Ince

    The term "differential flotation" is used to denote a flotation operation in which separation is effected between two or more minerals of the same class; e. g., lead sulfide from zinc sulfide, pyrite

    Jan 1, 1930

  • AIME
    Iron and Steel Division - Density of Liquid Iron Silicates

    By R. G. Ward, John Henderson. R. G. Hudson, G. Derge

    Densities of melts of the iron oxide-silica system in contact with solid iron have been measured by the maximum hubble pressure method in the composition range O to 37 wt pct SiOz and the temperature

    Jan 1, 1962

  • AIME
    New York Paper - Stainless Steel with Particular Reference to the Milder Varieties (Stainless Iron) (with Discussion)

    By John H. G. Monypenny

    The range of chromium content of stainless steel is, in most cases, included in the limits 11 to 14 per cent., or the middle part of the range, 9 to 16 per cent., specified by the discoverer. For some

    Jan 1, 1924

  • AIME
    New York Paper - Stainless Steel with Particular Reference to the Milder Varieties (Stainless Iron) (with Discussion)

    By John H. G. Monypenny

    The range of chromium content of stainless steel is, in most cases, included in the limits 11 to 14 per cent., or the middle part of the range, 9 to 16 per cent., specified by the discoverer. For some

    Jan 1, 1924

  • AIME
    The Evolution Of The Metallurgical Society Of AIME

    By James B. Austin

    Growth of the Society When the Institute was born in May, 1871, it was given the name American Institute of Mining Engineers. Yet from its conception a few months earlier, its genetic code clearly

    Jan 1, 1971

  • AIME
    Principles of Sulfide Mineral Flotation

    By John Rogers

    The goal of a detailed quantitative understanding of the variables insulfide flotation in terms of established, or new, scientific principles is still distant, although there has been a good beginning

    Jan 1, 1962

  • AIME
    Preliminary Stripping Of The Morenci Open Pit, Arizona (7acbaec3-f53c-4446-b4b0-8678cd6dcbf7)

    By Walter C. Lawson

    THE first plans were made in 1930 for the mining by open-pit methods of the low-grade disseminated ore body now known as the Morenci open pit. It was not until 1937, however, that final plans were com

    Jan 1, 1938

  • AIME
    Papers - Age-hardening - Copper-beryllium "Bronzes." (With Discussion)

    By J. Kent Smith

    The object of this investigation was to ascertain the effect of varying percentages of beryllium upon pure copper and the properties of the resultant alloys in their softest condition, the effect of h

    Jan 1, 1932

  • AIME
    The Cause Of Bleeding In Ferrous Castings

    By C. A. Zapffe

    BOTH the foundryman and the theoretical metallurgist are now generally agreed that the anomalous "rising" or "bleeding" of certain ferrous castings of killed metal is primarily attributable to hydroge

    Jan 1, 1942

  • AIME
    Non-ferrous Metallurgy - Recovery of Copper by Leaching, Ohio Copper Co. of Utah (with Discussion)

    By Arvid E. Anderson, Frank K. Cameron

    The weathering of copper-bearing ores with the formation of a water soluble salt and the recovery of the metal by leaching and evaporation precipitation, are processes long known, which have at variou

    Jan 1, 1926

  • AIME
    Minerals Beneficiation - Improved Process for Making Prereduced Iron Ore Pellets, An

    By 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

  • AIME
    Slag-Control Methods

    IN A broad sense, the subject of slag control includes not only the adjustment of the composition of the slag but also of its relative weight in terms of percentage of the metal-bath weight. The slag

    Jan 1, 1944

  • AIME
    Papers - Constitution and Thermal Treatment - Recrystallization of Silicon Ferrite in Terms of Rate of Nucleation and Rate of Growth (T.P. 1438, with discussion)

    By J. K. Stanley, R. F. Meel

    The recrystallization of cold-worked metals is studied ordinarily by determining the temperatures required for complete recrystallization to occur within a given arbitrary time period, usually within

    Jan 1, 1942

  • AIME
    Papers - Constitution and Thermal Treatment - Recrystallization of Silicon Ferrite in Terms of Rate of Nucleation and Rate of Growth (T.P. 1438, with discussion)

    By R. F. Meel, J. K. Stanley

    The recrystallization of cold-worked metals is studied ordinarily by determining the temperatures required for complete recrystallization to occur within a given arbitrary time period, usually within

    Jan 1, 1942

  • AIME
    Steep Pitch Mining Of Thick Coal Veins (ea73b8b0-bcfa-4f7b-b28c-3daec90985a3)

    By W. G. Whildin

    This paper will be confined to a discussion of the methods in use in the property of the Lehigh Coal & Navigation Co. in the Panther Creek valley. Only the methods used in mining the Mammoth vein will

    Jan 12, 1914

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Diffusion in R301 Alloy and Its Effect on the Corrosion Resistance (Metals Tech., Dec. 1945, T. P. 1940, with discussion)

    By L. F. Mondolfo

    R301 is a clad aluminum alloy, composed of a core of a duralumin-type alloy clad with a magnesium silicide alloy. It differs from other well-known clad alloys in that the cladding and the core respond

    Jan 1, 1946

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Diffusion in R301 Alloy and Its Effect on the Corrosion Resistance (Metals Tech., Dec. 1945, T. P. 1940, with discussion)

    By L. F. Mondolfo

    R301 is a clad aluminum alloy, composed of a core of a duralumin-type alloy clad with a magnesium silicide alloy. It differs from other well-known clad alloys in that the cladding and the core respond

    Jan 1, 1946

  • AIME
    Production - Domestic - Kansas Oil and Gas during 1936

    By W. A. Ver Wiebe

    It is becoming increasingly apparent that the State of Kansas contains one of the largest reserve areas for oil exploration in the United States. During the year 1936 no less than 54 new oil pools wer

    Jan 1, 1937