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  • AIME
    Developments In Computer Control Of Large-Scale Coal Preparation Plants

    By Hadyn W. J. Wren

    The practical experience obtained from designing and commissioning of fully controlled coal preparation plants, using centralised mini computers is discussed. The importance of defining a workable

    Jan 1, 1984

  • AIME
    The Rothschönberger Stollen

    By Rossiter W. Raymond

    (Read at the Wilkes-Barre Meeting, May, 1877.) THE 12th of April, 1877, witnessed the celebration, at Freiberg, Saxony, of an event profoundly important for the ancient mining industry of that distri

    Jan 1, 1878

  • AIME
    Mine Fires Extinguished By Sealing

    By Douglas Bunting

    IN THE anthracite fields of Pennsylvania, mine fires occur with more or less regularity and their existence is an ever-present hazard in coal mining. In all probability 90 per cent. of the mine fires

    Jan 9, 1921

  • AIME
    Reservoir Engineering–General - Effect of Reservoir Environment on Water-Oil Displacement

    By J. R. Kyte, V. O. Naumann, C. C. Mattax

    Imbibition and waterflooding tests at reservoir conditions show that conventional tests at room conditions sometimes lead to recovery estimates that are too low. Core samples which are of intermediate

  • AIME
    Ash Properties and Combustion Characteristics of Lignites

    By E. A. Sondreal, F. I. Honea

    This paper summarizes coal and ash properties and pilot-plant results for 14 key lignite seams in the Gulf Province, as well as discusses operating problems encountered by the four Texas power plants

    Jan 1, 1982

  • AIME
    Lime (a20d3a64-d0fb-4f5d-96ac-5a4197a3dcf3)

    By Jeffrey L. Thompson, Kenneth A. Gutschick, Robert C. Freas, Robert S. Boynton

    Lime, the "versatile chemical," is, generally speaking, a calcined or burned form of limestone commonly known as quicklime, calcium oxide or calcia, or, when water is added, calcium hydroxide or slake

    Jan 1, 1983

  • AIME
    Blasthole Mining At Geco

    By G. M. T. Marshall

    Plans to bring the Geco Mines property in Manitouwadge, Ont., into production began in 1954. At that time over 12 million tons of copper-zinc ore were indicated in a zone 2700 ft long. A concentrating

    Jan 8, 1959

  • AIME
    Project Independence: Desirable but Uncertain

    By Eugene Guccione

    For at least 10 years, various industry people had warned about the alarming decline in the nation's oil and gas reserves. Then, in October 1973, the Organization of Petroleum Exporting Countries

    Jan 5, 1975

  • AIME
    Large Rock Conveying Systems and Their Application in Open- Pit Mines

    By T. W. Martin, T. J. Crocker, J. M. Goris

    The current technology of large rock conveyors is reviewed. Based on this investigation two large rock conveyor concepts have been developed and a test facility investigation designed and fabricated.

    Jan 1, 1983

  • AIME
    Institute of Metals Division - Direct Observations on the Annealing of a Si-Fe Crystal in the Electron Microscope

    By Hsun Hu

    Direct observations were made on the recrystalli-zntion of a cold-rolled (110) [001] crystal of 3 pct Si-Fe by annealing thin sections of the specimen inside the electron microscope during examination

    Jan 1, 1962

  • AIME
    Institute of Metals Division - Metallographic Sample Preparation of Pb-Bi Alloys (TN)

    By R. A. Spurling, C. G. Rhodes

    SATISFACTORY metallographic sample preparation of very soft metals, such as lead and its alloys is generally difficult. The prime requisite of any technique must be that the result gives an undis-tort

    Jan 1, 1965

  • AIME
    Iron and Steel Division - The Effect of Carbon on the Activity of Sulphur in Liquid Iron

    By R. C. Buehl, J. P. Morris

    ACTIVITY values for sulphur dissolved in liquid iron and slags as functions of composition and temperature are needed in applying thermodynamics to sulphur-control problems in iron- and ' steel-m

    Jan 1, 1951

  • AIME
    Oxides in Brass

    By O. W. Ellis

    IN VIEW of the extensive use of the brasses and bronzes in engineering practice it is indeed surprising that so little scientific work has been done on the oxides in these alloys. Recognition of the i

    Jan 1, 1930

  • AIME
    Papers - Rates of High-temperature Oxidation of Dilute Copper Alloys (T.P. 1368, with discussion)

    By W. A. Johnson, F. N. Rhines, W. A. Anderson

    The rate of the high-temperature oxidation of pure copper has been measured repeatedly by numerous investigators. It appears to be generally agreed: (I) that at constant temperature, after the initial

    Jan 1, 1942

  • AIME
    PART VI - The Titanium-Beryllium Phase Diagram up to 10 Wt Pct Be

    By Donald B. Hunter

    The Ti-Be system up lo 10 wt pct Be with cortlmercialll' pure titanium has been determined using metal-lographic techniques. Beryllium forms the p eutec-toid type of dinqarz with titanium; the eu

    Jan 1, 1967

  • AIME
    Papers - Rates of High-temperature Oxidation of Dilute Copper Alloys (T.P. 1368, with discussion)

    By W. A. Anderson, F. N. Rhines, W. A. Johnson

    The rate of the high-temperature oxidation of pure copper has been measured repeatedly by numerous investigators. It appears to be generally agreed: (I) that at constant temperature, after the initial

    Jan 1, 1942

  • AIME
    Materials Handling Product Digest

    Electro-mechanical actuator, self-protected for mechanical and electrical overload, is developed by RACO. Tubular housing consists of squirrel cage motor with hollow rotor shaft and inner threads in t

    Jan 9, 1973

  • AIME
    Design Considerations In Western U.S. Room And Pillar Oil Shale Mines

    By Alvin L. Langstaff, Harold D. Raymond

    The design of entry systems and mining panels in room-and-pillar oil shale mines seeks to optimize extraction while ensuring both short- and long-term stability of mine openings. Important criteria fo

    Jan 1, 1984

  • AIME
    Papers - Basic Factors Involved in Bloating of Clays (T. P. 1486, with discussion)

    By J. D. Sullivan, Chester R. Austin, J. L. Nunes

    It is characteristic of most shales and surface clays that a bloated or vesicular structure is produced by burning to a sufficiently high temperature, usually about 150° to 200°F. above the normal mat

    Jan 1, 1942

  • AIME
    Papers - Basic Factors Involved in Bloating of Clays (T. P. 1486, with discussion)

    By J. D. Sullivan, Chester R. Austin, J. L. Nunes

    It is characteristic of most shales and surface clays that a bloated or vesicular structure is produced by burning to a sufficiently high temperature, usually about 150° to 200°F. above the normal mat

    Jan 1, 1942