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  • AIME
    Institute of Metals Division - Dispersion Strengthening of Copper by Internal Oxidation

    By Nicholas J. Grant, Oliver Preston

    A series of dilute solid solutions of a1uminum and silicon in copper, in powder -form, were internally oxidized, compacted, and extruded, to produce Cu-A12O3 and Cu-SiO2 alloys with 0.1 to 12 vol pct

    Jan 1, 1962

  • AIME
    PART XI – November 1967 - Communications - On the Dilute Solutions of Silver, Gold, and Platinum in Liquid Lead

    By A. K. Jena, M. O. Bever

    The thermodynamic behavior of dilute solutions of copper, silver, and gold in liquid tin is not explained by current solution theories.1-3 The relative partial gram-atomic enthalpies, or heats of solu

    Jan 1, 1968

  • AIME
    Papers - Classification - Natural Groups of Coal and Allied Fuels (With Discussion)

    By M. R. Campbell

    Coal is the geological product of entombed vegetal tissues. This view of its origin led Stopes and Wheeler to define it as "mummified plants." They evidently intended this term to be used in a broad w

    Jan 1, 1930

  • AIME
    Technical Papers and Discussions - Steelmaking - Oxygen in Liquid Open-hearth Steel-Effect of Special Additions, Stirring Methods and Tapping (Metals Tech., Oct. 1946, T. P. 2076, with discussion)

    By B. M. Larsen, T. E. Brower

    In two previous paperslJ dealing with the carbon-oxygcn reaction, and the simultaneous content of each, in liquid steel in the furnace, we have made use of the quantity A[O], defined as the excess oxy

    Jan 1, 1948

  • AIME
    Technical Papers and Discussions - Steelmaking - Oxygen in Liquid Open-hearth Steel-Effect of Special Additions, Stirring Methods and Tapping (Metals Tech., Oct. 1946, T. P. 2076, with discussion)

    By B. M. Larsen, T. E. Brower

    In two previous paperslJ dealing with the carbon-oxygcn reaction, and the simultaneous content of each, in liquid steel in the furnace, we have made use of the quantity A[O], defined as the excess oxy

    Jan 1, 1948

  • AIME
    Professional Divisions (cf6a9177-b9c8-4415-a70b-f51169380636)

    Institute of Metals Division SAM TOUR, Chairman J. R. FREEMAN, JR., Vice-chairman ZAY JEFFRIES, Past-chairman C. H. MATHEWSON, Vice-chairman WILLIAM M. COHSE, Secretary-Treasurer 810 Eighteenth Str

    Jan 1, 1929

  • AIME
    Eastern Iron Ore Mining

    By ROBERT E. CROCKETT

    MAGNETITE mining and milling in New York, New Jersey and Pennsylvania continued to remain comparatively inactive during 1933, owing to the low rate of output of the steel industry and also to unrestri

    Jan 1, 1934

  • AIME
    Selection of Ore-Crushing and Grinding Equipment

    By Kennedy, Joseph E.

    MANY things must be considered in coming to a decision as to what type of crushing and grinding equipment is to be used for preparing run-of-mine ore for concentration, amalgamation, flotation, or cya

    Jan 1, 1936

  • AIME
    Where Does the Mine Dollar Go?

    By Paul M. Tyler

    DOES mining pay? Inasmuch as the whining of minerals from Nature is one of the world's principal sources of new wealth, this question is of general economic interest but it is obviously of even m

    Jan 1, 1934

  • AIME
    Iron and Steel Division - Oxygen Activity in Iron Oxide Slags

    By H. Larson, J. Chipman

    The ferrous and ferric oxide concentrations of slags, expressed as j = Fe+++/(Fe+++ + Fe++), have been established through gas-slag equilibrium at 1550°C in a range of oxygen pressure of 10-I to 10-9

    Jan 1, 1954

  • AIME
    List Of Members, Associates And Junior Associates Alphabetically Arranged

    [†AARONSON, ALFRED E., Vice-Pres., Mid-Co. Petroleum Co., Mid-Co. Bldg. Tulsa, Okla. '18 ABADIE, EMILE R., Min. Engr Address wanted. '76 ¦ABADILLA, QUIRICO A. Geol. Dept. Cia. Mexicans de

    Jan 1, 1925

  • AIME
    Who’s Who in Mineral Engineering – 1972 SME Membership Directory

    SME Membership Directory Listings of record March 31, 1072 SOCIETY OF MINING ENGINEERS OF AIME

    Jan 7, 1972

  • AIME
    A Miner and Public Servant

    FROM the first to the last meeting of t h e Rocky Mountain Club John Hays Hammond served as president. He guided its deliberations when there were any, but that always y o u n g organization wa

    Jan 4, 1928

  • AIME
    Abrasion And Dust-Losses In Ore-Drying.

    By Carl F. Dietz

    (New York Meeting, February, 1912.) THE problem of drying ores is one that most mill-engineers are sooner or later called upon to meet, and it may be timely to point out sortie of the difficulties re

    Jul 1, 1912

  • AIME
  • AIME
    Reservoir Engineering-General - Heat Transfer Perpendicular to Fluid Flow in Porous Rocks

    By J. M. Smith, G. P. Willhite, J. S. Dranoff

    Heat transfer rates were measured in sandstones with flow of gases perpendicular to the direction of energy transfer. Effective thermal conductivities ker ranged from 0.7 to 1.7 Btu/(br)(ft)(°F). The

  • AIME
    Russia's Mineral Potential

    By Paul M. Tyler

    MILITARY power stems from industrial power and industrial power in turn depends predominantly upon an ample and assured supply of mineral raw materials. It thus becomes the duty of mineral economists

    Jan 6, 1951

  • AIME
    Part IX – September 1969 – Papers - Critical Current Enhancement by Precipitation in Tantalum-Rich Zirconium Alloys

    By H. C. Gatos, J. T. A. Pollock

    It is well known that the superconducting critical current densities of many alloy superconductors may be increased by cold working and in some cases further enhanced by a short heat treatment. This l

    Jan 1, 1970

  • AIME
    Caving and Drawing at Climax

    By F. S., Mc Nicholas

    A practical discussion of the theory of A block caving is presented which applies particularly to the physical conditions of the Climax orebody although the conditions are sufficiently characteristic

    Jan 1, 1950

  • AIME
    A Study of the 470 o C. Transition Point in Cast 60:40 Brass

    By Frances Hurd, Clark

    Iv 1897, Roberts-Austen(l)$ found an arrest in the thermal curves of alloys of 60 per cent. copper and 40 per cent. zinc. This break occurred from 450° to 470° C. Shepherd, (2) working in 1904, was un

    Jan 1, 1927