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  • AIME
    Iron and Steel Division - The Thermodynamics of Solid Iron at Elevated Temperatures

    By Philip D. Anderson, Ralph Hultgren

    Heat contents of extremely pure iron were measured over the range 300"to 1433"K, using a diphenyl ether calorimeter. Results from three samples containing widely differing impurities agreed with one a

    Jan 1, 1962

  • AIME
    Microscopic Structure Of Copper

    By H. B. Pulsifier

    THE following report on the structure of copper is the result of work done in the laboratory of the Rome Wire Co. early in 1925. Previous work had indicated to the author that excellent results might

    Jan 1, 1926

  • 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
    Optimum Open- Pit Mine Production Scheduling

    By Thys B. Johnson

    Traditional mine planning concepts are discussed and suggestions for improvement through use of the developed model are proposed. The approach developed in this paper allows optimal planning of the co

    Jan 1, 1969

  • AIME
    Colorado Paper - The Actual Accuracy of Chemical Analysis

    By F. P. Dewey

    The subject of this paper does not embrace the consideration of ways and means for the increase of analytical accuracy, or the question what could or should be attained in that direction. I desire sim

    Jan 1, 1897

  • AIME
    Chattanooga Paper - Development-Sampling and Ore-Valuation of Gold-Mines

    By Mungo Park, C. Baring Horwood

    This paper is intended, in the light of recent investigations, to call attention to some of the essential features of good practice in sampling and mine-valuation. Mine-sampling may be divided broadly

    Jan 1, 1909

  • AIME
    St. Louis Paper - October, 1917 - Some Unusual Features in the Microstructure of Wrought Iron (with Discussion)

    By Henry S. Rawdon

    The structure of wrought iron as usually described by metallographists and workers in metal in general is that of a fairly pure iron. Impurities, if present, are usually considered as being in solid s

    Jan 1, 1918

  • AIME
    Honorary Members of the Institute (bbbb1f06-13b0-4001-aad0-d89a2647c065)

    DR FRANK DAWSON ADAMS Montreal, Canada HENRY STURGIS DRINKER Bethlehem, Pa PROF HATON DE LA GOUPILLIERE Paris, France SIR ROBERT A. HADFEILD London, England HERBERT C. HOOVER Leoben, Austria ROB

    Jan 1, 1923

  • AIME
    Institute of Metals Division - Solubility of Gaseous Nitrogen in Gamma Iron and the Effect of Alloying Constituents-Aluminum Nitride Precipitation

    By E. W. Filer, R. P. Smith, L. S. Darken

    The solubility of nitrogen gas in purified iron and low alloy steels is determined for the y region (930° to 1350°C). The diffusivtiy of nitrogen is estimated from the rate of approach to equilibrium.

    Jan 1, 1952

  • AIME
    Institute Policy on Controversial Matters (62c1e0ed-6912-4b93-9e26-ae13a3f18ce0)

    At its meeting on February 21, 1933, the Board of Directors passed the following resolution defining and expressing the policy of the Institute with respect to official participation or action in cont

    Jan 1, 1938

  • AIME
    Cost Of Acquiring And Operating Mineral Properties - Part 1. Metal, Nonmetallic, And Coal

    By Paul M. Tyler

    Mineral raw materials, because they are essential to our industrial prosperity and military strength, must be made available in substantial quantities. regardless of cost. Variations in the cost of pr

    Jan 1, 1959

  • AIME
    The Theory Of Volcanic Origin Of Salt Domes

    By E. DeGolyer

    I. INTRODUCTION VOLCANIC origin. was among the first of the theories advanced to account for the occurrence of the salt domes of the Gulf coastal plain, northern Louisiana., and eastern Texas, and it

    Jan 5, 1918

  • AIME
    Coal - Drainage Behavior and Water Retention Properties of Fine Coal

    By D. W. Gillmore, C. C. Wright

    DEWATERING is a major problem in the preparation and utilization of fine-sized coals now being recovered in increasing amounts from colliery effluents, refuse banks, and silt ponds. Of the various met

    Jan 1, 1953

  • AIME
    Coal - Drainage Behavior and Water Retention Properties of Fine Coal

    By D. W. Gillmore, C. C. Wright

    DEWATERING is a major problem in the preparation and utilization of fine-sized coals now being recovered in increasing amounts from colliery effluents, refuse banks, and silt ponds. Of the various met

    Jan 1, 1953

  • AIME
    The Shifting Pattern of Mineral Demand

    By Charles White Merrill

    A forecast of mineral demand during the remaining years of the 20th century can serve as an excellent starting point for student mining and mineral engineers in planning their professional careers. Th

    Jan 2, 1964

  • AIME
    Institute of Metals Division - Embrittlement of Ti-A1 Alloys in The 6 to 10 Pct A1 Range (Discussion p. 1304)

    By W. F. Carew, F. A. Crossley

    IT has been reported that the Ti-8 pct A1 alloy is ductile as water quenched from 800°C but brittle as annealed at 650 °C." The present, somewhat limited, investigation was undertaken to discover the

    Jan 1, 1958

  • AIME
    Launders (6a067e6e-697c-4e62-af26-1bceaac245d9)

    By Harold A. Linke

    THE following article presents notes and data compiled and computed by the writer for use in the determination of: size and slope of mill launders, details of junction boxes and downspouts, and distri

    Jan 1, 1939

  • AIME
    Institute of Metals Division - System Titanium-Chromium-Molybdenum

    By W. Rostoker, R. P. Elliott, B. W. Levincer

    Phase equilibria in the Ti-Cr-Mo system have been investigated for alloys containing 100 to 40 pct Ti in the temperature range 550° to 1300°C. Five experimental isothermal sections and a surface of in

    Jan 1, 1954

  • AIME
    Lake Superior Paper - Discussion of Mr. Sperry's paper on the Influence of Lead on Rolled and Drawn Brass (see p. 485)

    FRank FirmstoNe, Easton, Pa.: The effect of lead on brass seems to have been recognized by Berthier, and the facts published by him as early as 1818 (Ann. des Mines, 1st ser., iii., 1818, p. 347 et se

    Jan 1, 1898

  • AIME
    Thermoelectric Pyrometry - Discussion (26eb00b1-16e5-4dda-abc7-56bbc4cf3970)

    J. T. LITTLETON, JR., ? Corning, N. Y. (written discussion?).-This. discussion will add little that has not been brought out but will show how the problems encountered in the Corning Glass Works were

    Jan 12, 1919