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  • AIME
    PART XI – November 1967 - Communications - Surface Textures in Iron and Steel

    By C. A. Stickels

    In a recent paper, Held1 showed that rolling conditions can have a marked effect on the volume fraction of surface texture produced in low-carbon steel. This variation in rolling texture is reflected

    Jan 1, 1968

  • AIME
    Industrial Minerals - Solids Fluidization Applied to Lime Burning

    By E. L. Kinsella, F. S. White

    Solids fluidization utilized in two ways for the commercial production of lime is described. Crushed —6 mesh limestone is dried and dedusted in a single bed reactor, then calcined in a 5-stage reactor

    Jan 1, 1953

  • AIME
    Industrial Minerals - Solids Fluidization Applied to Lime Burning

    By F. S. White, E. L. Kinsella

    Solids fluidization utilized in two ways for the commercial production of lime is described. Crushed —6 mesh limestone is dried and dedusted in a single bed reactor, then calcined in a 5-stage reactor

    Jan 1, 1953

  • AIME
    Institute of Metals Division - Creep of Al-Cu Alloys During Age Hardening

    By Ervin E. Underwood

    IT has been recognized for many years that dis-persed particles have great value in raising the creep resistance of metallic alloys. In fact, some of the most successful high-temperature alloys owe th

    Jan 1, 1958

  • AIME
    Production - Domestic - Oil and Gas Development in South Arkansas in 1941

    By Alec M. Crowell, J. W. Sanders

    While the production of crude oil and condensate in South Arkansas increased only 1.7 per cent over the 1940 figure, complete utilization of gas produced with the oil and condensate, and heretofore wa

    Jan 1, 1942

  • AIME
    Production - Domestic - Oil and Gas Development in South Arkansas in 1941

    By Alec M. Crowell, J. W. Sanders

    While the production of crude oil and condensate in South Arkansas increased only 1.7 per cent over the 1940 figure, complete utilization of gas produced with the oil and condensate, and heretofore wa

    Jan 1, 1942

  • AIME
    Diamond-Drill Blast Holes In A Magnetite Ore Body

    By Robert J. Linney

    IN the latter part of the year 1943, it was decided to experiment with diamond-drill blast holes in the Old Bed magnetite mine at the Mineville mines of the Republic Steel Corporation, in sections of

    Jan 1, 1945

  • AIME
    Long-Hole Mining Methods - Diamond-drill Blast Holes in a Magnetite Ore Body ( T.P. 1899,

    By Robert J. Linney

    In the latter part of the year 1943, it was decided to experiment with diamond-drill blast holes in the Old Bed magnetite mine at the Mineville mines of the Republic Steel Corporation, in sections of

    Jan 1, 1946

  • AIME
    Production Engineering - Possibilities of Secondary Recovery for the Oklahoma City Wilcox Sand (T. P. 1400, with discussion)

    By D. L. Katz

    The Oklahoma City Wilcox sand, discovered on March 26, 1930, has produced 394 million barrels of crude oil and 819 billion cubic feet of natural gas as of July I, 1941. The 100,000-bbl. wells, pressur

    Jan 1, 1942

  • AIME
    Production Engineering - Possibilities of Secondary Recovery for the Oklahoma City Wilcox Sand (T. P. 1400, with discussion)

    By D. L. Katz

    The Oklahoma City Wilcox sand, discovered on March 26, 1930, has produced 394 million barrels of crude oil and 819 billion cubic feet of natural gas as of July I, 1941. The 100,000-bbl. wells, pressur

    Jan 1, 1942

  • AIME
    Papers - Production - Domestic - Oil and Gas Development in Southwestern Pennsylvania during 1940

    By John T. Galey

    Production of crude oil for 1940 in southwestern Pennsylvania was off nearly 70,000 bbl., largely as a result of the great number oi abandonments, together with the lack of extension of the Washington

    Jan 1, 1941

  • AIME
    Papers - Production - Domestic - Oil and Gas Development in Southwestern Pennsylvania during 1940

    By John T. Galey

    Production of crude oil for 1940 in southwestern Pennsylvania was off nearly 70,000 bbl., largely as a result of the great number oi abandonments, together with the lack of extension of the Washington

    Jan 1, 1941

  • AIME
    Mining - Mining Methods at the Iron King Mine

    By L. Bombardieri, H. F. Mills

    IRON KING mine, producing gold-silver-lead-zinc ore, is 10 miles east of Prescott, Ariz. At present the 1806 level is being developed. The echelon pattern of ore deposit continues at depth but is less

    Jan 1, 1957

  • AIME
    Twinning in Ferrite (b3249773-77d9-4e99-9dcb-f26abd8aff87)

    By L. W. McKeehan

    THE occurrence of twins in large ferrite crystals, made by a new process, was reported in a recent note. This paper describes a typical case of such twinning and suggests, on the basis of the observed

    Jan 1, 1927

  • AIME
    PART I – Papers - Microplasticity in a Cu 1.9 Wt Pct Be Precipitation-Hardening Alloy

    By W. Bonfield

    The microstrain characteristics of a polycrystal-line Cu 1.9 wt pet Be precipitation-hardening alloy have been determined for various conditions of aging. The friction stress remained constant for all

    Jan 1, 1968

  • AIME
    Extractive Metallurgy Division - Melting of Malleable Nickel and Nickel Alloys

    By C. G. Bieber, R. F. Decker

    The effects of minor constituents on the malleability of nickel alloys are described. These effects are related to the atomic diameter, valence, and position on the Periodic Table. The basic methods f

    Jan 1, 1962

  • AIME
    C. H. Mathewson, New President, A.I.M.E.

    By AIME AIME

    MODERN metallurgy is an art and a science. The art is process metallurgy-extracting metals from their ores, refining them, and alloying them with one another and with certain nonmetals to produce ther

    Jan 1, 1942

  • AIME
    Thermal Expansion Properties Of Iron-Cobalt Alloys

    By W. C. Ellis, M. E. Fine

    INTRODUCTION IN the iron-cobalt system there are several property-composition relationships of theoretical importance. The alloys are ferromagnetic exhibiting a maximum saturation at approximately

    Jan 1, 1948

  • AIME
    Membership (110f1dd9-1c31-491f-8ce6-2f4251e6aff5)

    NEW- MEMBERS The following list comprises the names of those persons who became members during the period Feb. 10, 1917 to Mar. 10, 1917. ANDERSON, .LAWRENCE W., Min. Engr., Boston Mine, Utah Copp

    Jan 4, 1917

  • AIME
    Institute of Metals Division - The Transformation Temperature of Hafnium (TN)

    By D. K. Deardorff, H. Kato

    THE transformation temperature of hafnium from hcp to bcc is 1750° + 20 °C in contrast to previously published values by Duwez and fast2 which are believed inaccurate. The Bureau of Mines determined t

    Jan 1, 1960