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  • AIME
    Metals in the Government Printing Oftice

    By M. W. BERNEWITZ

    ALTHOUGH many persons know that a lot of type metal and etchings are used in the U. S. Government Printing Office few would expect to find anything on metals in the annual report of the Public Printer

    Jan 1, 1932

  • AIME
    Belt Scale Design Considerations

    By H. Colijn

    Belt scales are frequently used in the mining industry because of the ability to handle large tonnages without interrupting the material flow, fitting easily into all types of bulk handling systems an

    Jan 1, 1973

  • AIME
    Permissible-Type Dust Counter For Coal Mines

    By Sabert Oglesby, Albert L. Thomas

    Until recently, probably the best means of sampling airborne dusts has been the impinger method. Dust-laden air is drawn into a sampling tube, and the particulate matters separated from the air and co

    Jan 3, 1959

  • AIME
    Institute of Metals Division - High Speed Quenching Dilatometer

    By R. H. Raring, F. E. Martin

    A high speed gas quenching dilatometer useful in studying phase transformations in low alloy steels is described. Changes in specimen length are measured by means of an electrical micrometer tube. The

    Jan 1, 1957

  • AIME
  • AIME
    The Drift Of Things (c36647c9-dac2-44aa-820c-b27673b5eae2)

    By Edward H. Robie

    EIGHT years ago in this department we had a column on the daiquiri cocktail, which, as we pointed out at that time, was invented by mining engineers. Since then we have said little or nothing about al

    Jan 1, 1952

  • AIME
    Minerals Beneficiation - Use of Particulate Iron in the Precipitation of Copper from Dilute Solutions

    By A. E. Back

    A method is described in which particulate iron, as distinguished from high purity iron powders used in powder metallurgy, is a precipitant for copper contained in dilute solutions. A new precipitatio

    Jan 1, 1968

  • AIME
    Coal - Mechanized Cutting and Face Stripping in the Ruhr

    By R. R. Estill

    THE rank of the Ruhr coal ranges from a high volatile bituminous coal to an anthracite, depending to some extent on the original depth of the seam. The average Ruhr coal corresponds to a soft bitumino

    Jan 1, 1951

  • AIME
    Coal - Mechanized Cutting and Face Stripping in the Ruhr

    By R. R. Estill

    THE rank of the Ruhr coal ranges from a high volatile bituminous coal to an anthracite, depending to some extent on the original depth of the seam. The average Ruhr coal corresponds to a soft bitumino

    Jan 1, 1951

  • AIME
    Types Of Primary Ore Deposits

    The classification here used is one of convenience only; it is not intended to include all known types of ore deposits. The characteristic features of the several well-marked types of primary minerali

    Jan 1, 1932

  • AIME
    Production Engineering and Research - Role of Connate Water in Secondary Recovery of Oil (T.P. 1608, Petr. Tech., July 1943).

    By Robert B. Bossler, Parke A. Dickey

    The presence of connate water in oil sands is of far greater practical significance in secondary oil-recovery operations than it is in primary operations. The percentage saturations of oil, water, and

    Jan 1, 1944

  • AIME
    Production Engineering and Research - Role of Connate Water in Secondary Recovery of Oil (T.P. 1608, Petr. Tech., July 1943).

    By Parke A. Dickey, Robert B. Bossler

    The presence of connate water in oil sands is of far greater practical significance in secondary oil-recovery operations than it is in primary operations. The percentage saturations of oil, water, and

    Jan 1, 1944

  • AIME
    Institute of Metals Division - Uranium-Bismuth System

    By R. J. Teitel

    FOUR or five years ago an investigation was initiated to study and develop basic information on llquid metal fuels for future power nuclear reactors. The objective was to find fluid forms of uranium (

    Jan 1, 1958

  • AIME
    Sublevel Stoping at Kidd Creek Mines

    By J. Eric Belford

    The Kidd Creek orebody is a massive base metal sulphide deposit with surface dimensions of 168 m by 670 m. The steeply dipping ore- body has been evaluated to a depth of 1 524 m. To date, the mini

    Jan 1, 1981

  • AIME
    Deviation Of Diamond-Drill Holes In The Metaline District, Washington

    By Edward Sampson, Allan B. Griggs

    SURVEYING of many holes drilled by the U. S. Bureau of Mines in the Metaline district has shown surprising deviations. The holes start in the Ledbetter slate (Ordovician) and pass into the underlying

    Jan 1, 1946

  • AIME
    Technical Papers and Notes - Institute of Metals Division - Delta Phase Field of the U-Zr Equilibrium Diagram

    By C. A. Bruch, J. F. Duffey

    On the basis of metallographic and cooling-rate studies of 15 U-Zr alloys, a new version of the 6 phase region of the U-Zr phase diagram is proposed. IN several published diagrams of U-Zr alloy sys

    Jan 1, 1959

  • AIME
    Influence and Control of Water in Underground Mining

    By R. L. Loofbourow

    We are concerned with the destabilizing effects of water inflow and remedies which can be used to reduce that cause. The number of these remedies which have already been demonstrated in mining may be

    Jan 1, 1983

  • AIME
    ECPD Accredited Mineral Engineering Colleges

    As a service to its readers, MINING ENGINEERING is publishing the mineral industry portion of the 1957 list of Accredited Undergraduate Engineering Curricula in the United States. This list, revised a

    Jan 7, 1958

  • AIME
    Extractive Metallurgy Division - Interface and Marker Movements in Diffusion in Solid Solutions of Metals

    By Luiz C. Correa da Silva, Robert F. Mehl

    An experimental study of the movement of markers in the systems Cu/a-brass, Cu/Sna-solid solution, Cu/Ala-solid solution, Cu/Ni, Cu/Au, Ag/Au, employing many types of markers and a variety of temperat

    Jan 1, 1952

  • AIME
    Equilibrium of Sulfur-Bearing Gases and Solids Relevant to the Burning of Limestone

    By L. S. Darken, H. A. Wriedt

    The equilibria at 1 atm total pressure and 600° to 1300°C (1112° to 2372°F) between gas mixtures with various partial pressures of the reactive constituents (principally sulfur dioxide, carbon dioxide

    Jan 1, 1974