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  • AIME
    Chemistry of Coal (4162ff12-8f10-449f-a869-5aa997788092)

    By Wilbur C. Helt

    The United States is self-sufficient in bituminous coal and lignite resources to meet the high range of energy demands forecast for the remainder of this century and beyond. The known or proved recove

    Jan 1, 1973

  • AIME
    Institute of Metals Division - Mechanical Properties of Beryllium Fabricated by Powder Metallurgy (0ef6c77c-0d65-496b-a7ba-200c41f3a1a4)

    By K. G. Wikle, W. W. Beaver

    A general survey of the mechanical properties of commercially pure beryllium fabricated from powder by vacuum hot pressing and other consolidation methods is presented. The effect of fabrication metho

    Jan 1, 1955

  • AIME
    The Design And Cost Of A Fragmentation System For In Situ Extraction Of Copper

    By A. Aly Selim

    A computer model was developed to calculate the fragmentation cost for in situ leaching operations as a function of the blast design and deposit parameters. The model is based on blasting an ore zone

    Jan 1, 1977

  • AIME
    Papers - Solubility of Oxygen in High-purity Copper (T.P. 1280, with discussion)

    By E. N. Skinner, Arthur Philliops

    During the course of an experimental program concerned with the hydrogen embrittlement of copper containing oxygen in concentrations within the solubility limits it became necessary to make a critical

    Jan 1, 1941

  • AIME
    Papers - Solubility of Oxygen in High-purity Copper (T.P. 1280, with discussion)

    By E. N. Skinner, Arthur Philliops

    During the course of an experimental program concerned with the hydrogen embrittlement of copper containing oxygen in concentrations within the solubility limits it became necessary to make a critical

    Jan 1, 1941

  • AIME
    Symposia - Symposium on Cohesive Strength (Metals Technology, December 1944) - A High-speed Dilatometer and the Transformational Behavior of Six Steels in Cooling (With discussion)

    By C. E. Jackson, E. C. Nelson, A. L. Christenson

    Much information regarding the transfornlatio~lal characteristics of a steel as it cools in a known manner from the austenitic state can be obtained from dilatometric studies. This method has received

    Jan 1, 1945

  • AIME
    Institute of Metals Division - Faults in the Structure of Copper-Silicon Alloys - Discussion

    By C. S. Barrett

    W. Hofmann, J. Ziegler, and H. Hanemann—Having dealt with the same alloys in the winter 1941 to 1942, we want to give a short report on the generating of the hexagonal kappa phase by deforming the sup

    Jan 1, 1951

  • AIME
    Papers - Milling Practice - Concentration of Iron Ores in the United States (T. P. 1629, Min. Tech., Jan. 1944)

    By T. B. Counselman

    Probably the earliest concentration of iron ore in this country was carried on in the northeastern magnetite areas. Magnetic concentration was relatively simple and gave a concentrate that, after aggl

    Jan 1, 1947

  • AIME
    Papers - Milling Practice - Concentration of Iron Ores in the United States (T. P. 1629, Min. Tech., Jan. 1944)

    By T. B. Counselman

    Probably the earliest concentration of iron ore in this country was carried on in the northeastern magnetite areas. Magnetic concentration was relatively simple and gave a concentrate that, after aggl

    Jan 1, 1947

  • AIME
    Papers - Electrocapillary Amalgamation (T.P. 676, with discussion)

    By Orson Cutler Shepard

    The term "electrocapillary amalgamation" is used in this paper to designate amalgamation processes that depend upon electrocapillary phenomenon; i.e., the action of an electric current upon the surfac

    Jan 1, 1939

  • AIME
    Papers - Electrocapillary Amalgamation (T.P. 676, with discussion)

    By Orson Cutler Shepard

    The term "electrocapillary amalgamation" is used in this paper to designate amalgamation processes that depend upon electrocapillary phenomenon; i.e., the action of an electric current upon the surfac

    Jan 1, 1939

  • AIME
    Increasing Coal Flotation – Cell Capacities

    By H. L. Riley, B. W. Gandrud

    As far as the present writers know, this system of flotation has not been used elsewhere in this country, but in the last couple of years it has been introduced, with minor variations, at one plant in

    Nov 1, 1955

  • AIME
    Electrocapillary Amalgamation

    By Orson Shepard

    THE term "electrocapillary amalgamation" is used in this paper to designate amalgamation processes that depend upon electrocapillary phenomenon; i.e., the action of an electric current upon the surfac

    Jan 1, 1936

  • AIME
    Production Technology - Behavior of Dissolved Oxygen in Oil Field Brine

    By Glenn A. Marsh, George Bernard

    It is often assumed that aerated oil field brines which are to be injected underground contain dissolved oxygen in amounts which will cause appreciable corrosion. Through the use of a new portable dis

    Jan 1, 1952

  • AIME
    Pittsburg Paper - Notes on Conveying-Belts and Their Use

    By Thomas Robins

    About six years ago the writer had occasion to visit a large magnetic iron-ore concentrating-plant, and then saw for the first time rubber belts employed for conveying-purposes. These belts were from

    Jan 1, 1897

  • AIME
    Factors Affecting Investment in South American Mining - Peru

    By NEWTON B. KNOX

    PERU, lying south of Ecuador and having common frontiers with Brazil, Chile, and Bolivia, includes over a thousand miles of the Andean mountains. The coastal plain is arid and narrow and the Amazonian

    Jan 1, 1945

  • AIME
  • AIME
    Petroleum Division Studies All Phases of the Industry

    By W. E. Wrather

    SERIOUS consideration was given by the Petroleum Division to a wide variety of subjects, during six busy sessions at the Annual Meeting. Beginning with a joint session on engineering research and prod

    Jan 1, 1933

  • AIME
    Phase Diagram Of The Copper-Iron-Silicon System From 90 To 100 Per Cent Copper

    By A. G. H. Andersen, A. W. Kingsbury

    SILICON bronzes containing iron are used to a considerable extent in industry, under the trade name of P.M.G. alloys. Various classes of wrought alloys fall in the composition range 1.5 to 3.5 per cen

    Jan 1, 1942

  • AIME