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  • AIME
    Professional Divisions 1946 - Institute Of Metals Division Established As A Division April 26, 1918

    [L. W. KEMPF, Chairman E. E. SCHUMACHER, Past-Chairman E. A. ANDERSON, Senior Vice-Chairman A. A. SMITH, JR., Vice-Chairman 11. A. MALONEY, Treasurer ERNEST KIRKENDALL, Secretary 29 West 39th St

    Jan 1, 1946

  • AIME
    Institute of Metals Division - Role of Dilute Binary Transition Element Additions on the Recrystallization of Vanadium

    By E. P. Abrahamson II

    The effect of transition element binary solid-solution additions upon the recrystallization temperature of vanadium has been investigated. Cr, Fe, Co, Ni, Mo, Ru, Rh, Os, and IY lower the recrystalliz

    Jan 1, 1962

  • AIME
    Position of Steel in 1948

    By W. S. Tower

    STEEL is the basic metal, the main metallic prop of the modern industrial world, a good gage for measuring the state of our complex economy. Any who had doubts on that score should have had them dispe

    Jan 1, 1948

  • AIME
    Past and Present Officers (3d1afa8f-bcb0-4ce8-be35-dea8460eb0c5)

    PRESIDENTS DAVID THOMAS 1871 R W RAYMOND 1872-1874 A L HOLLEY1875 ABRAM S HEWITT 1876 T STERRY HUNT 1877 ECKLEY B COXE 1878 - 1879 WILLIAM P SHINN 1880 WILLIAM METCALF 1881 RICHARD P ROTHWEL

    Jan 1, 1923

  • AIME
    An Operator's Viewpoint Of The Standard Cost System

    By Arthur W. Ruff

    One of the major challenges to management in the mining industry today is the establishment and maintenance of positive and dynamic programs for cost control and cost reduction. To meet the challenge,

    Jan 11, 1962

  • AIME
    Executive Committees Of Local Sections

    [Arizona BRENT N. RICHARD, Chairman ROBERT W. HUGHES, Vice-Chairman ROBERT E. S. HEINEMAN, Secretary-Treasurer Arizona Bureau of Mines, University of Arizona, Tucson, Ariz. THOMAS G. CHAPMAN

    Jan 1, 1940

  • AIME
    Some Experiments on Sintering Lead Sulphate Products

    By G. L. Oldright

    THE upper limit of richness of concentrates that can be smelted by means of the blast furnace without added diluents is fixed by the opera-tion of sintering. A sinter feed with normal gangue constitue

    Jan 1, 1940

  • AIME
    Trends (6be066f7-9363-4df6-8d3f-0d85a7d3172a)

    THERE is at least one concrete indication that Soviet Russia's two most important iron ore producing centers are seriously depleted. While keeping in mind Russia's penchant for reverse propa

    Jan 7, 1953

  • AIME
    Design Of Surface And Near-Surface Construction In Rock

    By A. J. Hendron, D. U. Deere, F. D. Patton, E. J. Cording

    In the design of structures founded in the near-surface rock, a distinction may be made between those problems that are related to the strength of the rock mass, and those that are related primarily t

    Jan 1, 1967

  • AIME
    42. Uranium Deposits in the Eocene Sandstones of the Powder River Basin, Wyoming

    By Vernon A. Mrak

    The Powder River Basin of northeast Wyoming was the first area in the state to receive attention during the early days of uranium exploration. Although the uranium occurrences are many and widespread,

    Jan 1, 1968

  • AIME
    Beneficiation of Nonmetallics

    By Paul M. Tyler

    THE winning of metals from Nature has been advanced to a degree of efficiency that commands admiration even in this Machine Age. Economy of human effort underground, in surface plants, and in treatmen

    Jan 1, 1935

  • AIME
    Symposium on Practical Aspects of Diffusion - Diffusion of Alclad 24S-T Sheet (Metals Technology, Jan. 1944) (With discussion)

    By R. H. Brown, F. Keller

    Because of the extensive use of Alclad 24s alloy sheet in aircraft construction, there is much interest in the metallurgical changes caused by heat-treatment of this product.1, 2 One of these changes

    Jan 1, 1944

  • AIME
    Symposium on Practical Aspects of Diffusion - Diffusion of Alclad 24S-T Sheet (Metals Technology, Jan. 1944) (With discussion)

    By F. Keller, R. H. Brown

    Because of the extensive use of Alclad 24s alloy sheet in aircraft construction, there is much interest in the metallurgical changes caused by heat-treatment of this product.1, 2 One of these changes

    Jan 1, 1944

  • AIME
    Sinking Tennessee Copper's Circular Shaft

    By L. Weaver

    THE Tennessee Copper Co.'s mines are in the southeast corner of the state of Tennessee. Polk Co., in the well-known Ducktown copper basin. Their new circular production shaft will eventually be t

    Jan 11, 1950

  • AIME
    Papers - Nonferrous Metallurgy - Electrolytic Cadmium Plant of Anaconda Copper Mining Co. at Great Falls, Montana (With Discussion)

    By W. E. Mitchell

    The ore that is being treated by the present plant lies between the leached zone, or capping, and the mixed sulfide and oxide zone. The principal copper minerals are chalcanthite (CuS04.5H20), brochan

    Jan 1, 1930

  • AIME
    A Correction - Gold Dredging In California And Methods Devised To Increase Recovery

    By E. S. Leaver

    The authors of the paper above mentioned have sent the following statement to correct erroneous com-ments and implications in their article with the re-quest that it be published: "In the above men

    Jan 1, 1937

  • AIME
    Advantages of Coal Carbonization as Exemplified in the Curran-Knowles Process

    By M. D. Curran

    AS applied to coal, the term processing is subject to many interpretations. To some it means preparation of coal for the market by mechanical means such as crushing, sizing, washing, or treating with

    Jan 1, 1939

  • AIME
    Copper Refining in the United States.*

    By T. Egleston

    THE materials containing copper which are refined in the United States, are, for the most part, the native, coppers of Lake Superior. Until quite recently but little pig copper was made for sale, and

    Jan 1, 1881

  • AIME
    Further Notes on Milling Practice and Flowsheet Details

    By D. S. Sanders

    IN the four mills of the Cerro de Pasco Copper Corp. in Peru, some 3000 tons of complex sulphide ores are treated daily, with four kinds of concentrates produced: copper, lead, zinc, and pyrite, each

    Jan 1, 1945

  • AIME
    Institute of Metals Division - Deformation Mechanisms and Work Hardening in Rhenium

    By A. T. Churchman

    The deformation modes of rhenium have been identified as those typical of the hexagonal metals, titanium, zirconium, and beryllium whose c/a ratios, in common with rhenium, are less than ideal for clo

    Jan 1, 1961