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  • AIME
    Low-carbon Steel

    By H. B. Pulsifer

    ONE of the most common basic open-hearth furnace products is a simple carbon steel with a carbon range from 0.05 to 0.15 per cent. The material is widely used for sheets, tubes, bars, wire and the inn

    Jan 1, 1931

  • AIME
    Canadian Paper - Loading Ore Underground with Scrapers at the Utah-Apex Mine

    By S. P. Holt

    The chief use of scrapers at this mine has been on lead ore of milling grade, clean and dry, in stulled stopes, 50-100 ft. long, 5-12 ft. high, and pitching 20-30°. Scrapers have also been used to fil

    Jan 1, 1923

  • AIME
    Canadian Paper - Loading Ore Underground with Scrapers at the Utah-Apex Mine

    By S. P. Holt

    The chief use of scrapers at this mine has been on lead ore of milling grade, clean and dry, in stulled stopes, 50-100 ft. long, 5-12 ft. high, and pitching 20-30°. Scrapers have also been used to fil

    Jan 1, 1923

  • AIME
  • AIME
    Minerals Beneficiation - Magnetic Separation for Mesabi Magnetite Taconite

    By J. E. Forciea, O. E. Palasvirta, L. G. Hendrickson

    AH pilot and commercial plants working with Mesabi Range taconite employ wet magnetic separation. Progress is being made with a dry magnetic process, but this has not yet been applied to taconite exce

    Jan 1, 1959

  • AIME
    Manganese-Steel Rails (d12de1d5-8544-49a5-b4f5-a39d15f87b2b)

    By Sir Robert Hadfield

    SINCE the writer has been intimately connected with the development of manganese steel for many years, some remarks upon the early work with regard to the rolling and forging of this material might he

    Jan 2, 1914

  • AIME
    Secondary Recovery and Pressure Maintenance - Oil Recovery in Five-Spot Pilot Flood

    By B. H. Caudle, L. G. Loncarie

    Pilot flooding is one method of evaluating a proposed secondary recovery project. However, the amount and rate of oil recovery from an unconfined pilot area is not usually the same as from an equal ar

  • AIME
    Reservoir Engineering – Laboratory Research - Application of Laboratory Data in Calculating the P...

    By E. F. Johnson, V. O. Naumann, D. P. Bossler

    A method is presented for calculating individual gas and oil or water and oil relative permeabilities from data obtained during a gas drive or a waterflood experiment performed on a linear porous body

  • AIME
    New York Paper - Notes on Cast-Iron (with Discussion)

    By Albert Sauveur

    It is delightful to read a technical paper like that of J. E. Johnson, The Effect of High Carbon on the Quality of Charcoal-Iron, presented in October, 1912, at the Cleveland meeting of the American I

    Jan 1, 1914

  • AIME
    Idaho's Coeur d'Alene District Sets Sights on Record Production

    By Ta M. Li, Russell A. Carter

    The first century of mining in northern Idaho's Couer d'Alene District will soon he drawing to a close. Like so many other great raining districts, it has been a period accompanied by a rich

    Jan 7, 1976

  • AIME
    Rock Mechanics - Theory of Similitude as a First Approximation in the Design of Coal Pillars

    By Phillip E. Deering, Robert M. Cox

    A model pillar study was conducted in which the engineering principles of dimensional analysis were applied to the problem of coal mine pillar design. The paper reviews the theory of similitude as app

    Jan 1, 1969

  • AIME
    Minerals Beneficiation - Properties of Heavy Liquids

    By W. L. Connell, O&apos

    The properties of some heavy liquids which can be used in sink-float separations are discussed with major emphasis being given to the halogenated hydrocarbons. Data are presented on density, viscosity

    Jan 1, 1963

  • AIME
    Institute of Metals Division - Effect of Superimposed Static Tension on the Fatigue Process in Copper Subjected to Alternating Torsion

    By W. A. Wood, H. M. Bendler

    Cylindrical fatigue specimens of OFHC* copper were subjected to alternating torsion while under axial tension. The superimposed tension strongly influenced the fatigue life of the specimens as wel

    Jan 1, 1962

  • AIME
    Endowment Funds (6843629e-f733-45af-884f-0648055957a6)

    The income of the Institute is derived mainly from dues, advertising in MINING AND METALLURGY and sale of publications. These sources are fortunately supplemented by the interest from invested funds n

    Jan 1, 1939

  • AIME
    Reservoir Engineering Equipment - A Thermoelectric Device for Measuring Thermal Conductivity of Rock

    By A. M. Khan, I. Fatt

    A new type of steady-state thermal conductivity apparatus is presented and described. Results of measurements on Berea sandstone, Solehofen limestone, Bandera sandstone and Bakelite are presented. The

    Jan 1, 1966

  • AIME
    Louis Davidson Ricketts, President

    The following record of the important responsibilities already shouldered by Dr. Ricketts will give some indication of the trust and confidence reposed in him by his colleagues. The Institute is to be

    Jan 3, 1916

  • AIME
    Papers - Orientation of Ferrite in Pearlite

    By D. W. Smith, Robert F. Mehl

    It has been shown by numerous studies that the orientations of new metal crystals are determined by the orientations of the crystals in the original matrix, whether these new crystals are formed by re

    Jan 1, 1935

  • AIME
    Papers - Orientation of Ferrite in Pearlite

    By D. W. Smith, Robert F. Mehl

    It has been shown by numerous studies that the orientations of new metal crystals are determined by the orientations of the crystals in the original matrix, whether these new crystals are formed by re

    Jan 1, 1935

  • AIME
    Adaptation Of Elastic-Wave Exploration To Unconsolidated Structures

    By Frank Rieber

    THE study of earthquakes long ago developed the fact that by studying the travel times of the various groups of waves from the same earthquake, as received on seismographs at varying distances, major

    Jan 1, 1928

  • AIME
    Chromite

    By W. D. Johnston, T. P. Thayer

    THE minerals that collectively are known as chromite form an isomorphous series of the general formula (Mg,Fe) 0. (Cr,Al,Fe) 203. So wide is the range in chemical composition in this group that chrome

    Jan 1, 1949