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  • AIME
    Institute of Metals Division - Measurement of Topological Parameters for Description of Two- Phase Structures with Special Reference to Sintering

    By R. T. DeHoff, L. J. Buteau, J. Kronsbein

    Network topology is introduced and used to describe sinter bodies at various stages of the sintering process. The matrices of incidence, loop-branch. tree-branch, and cut-branch are constructed and th

    Jan 1, 1965

  • AIME
    The Magnetic Iron Ores of New Jersey-Their Geographical Distribution and Geolog¬ Ical Occurrence

    By J. C. Smock

    THE magnetic iron ores of New Jersey are found in the northern part of the State, in the Highland Mountain range, which runs from the New York line on the northeast, to the Delaware River, near Easton

    Jan 1, 1874

  • AIME
    Papers - Zinc - Sintering Zinc Ores

    By H. J. Stehli

    The first sintering of zinc ores was done at the Bartlesville plant of the National Zinc Co., under the auspices of the late Otto Rissman. Mr. Rissman, who had had a long experience in the treatment o

    Jan 1, 1937

  • AIME
    Washington Paper - Physical Properties of Some of the Alloys of Manganese, Copper and Aluminum

    By Eugene H. Cowles

    The German silver industry of the United States amounts in value to upwards of $6,000,000 or $8,000,000 annually. Several thousands of people earn a livelihood pursuing it, and the beautiful goods and

    Jan 1, 1890

  • AIME
    Mining - Ground Water Control in Underground Mining

    By R. C. Mahon

    THE importance of ground water control in glacial drift overlying mines is widely recognized. Adequate handling of the problem results in considerable saving in overall pumping costs, as the cost of p

    Jan 1, 1955

  • AIME
    Contents of Volume 137 (Institute of Metals Division)

    Page Foreword. By Edmund M. Wise..................... 3 A.I.M.E. Officers and Dircctors...................... 4 Institute of Metals Division Officers and Committees............

    Jan 1, 1940

  • AIME
    Contents of Volume 137 (Institute of Metals Division)

    Page Foreword. By Edmund M. Wise..................... 3 A.I.M.E. Officers and Dircctors...................... 4 Institute of Metals Division Officers and Committees............

    Jan 1, 1940

  • AIME
    Papers - Gold and Silver Milling and Cyaniding - Milling Methods at the Concentrator of The Fresnillo Company

    By W. A. Binsacca

    The concentrator treats sulfide ore containing lead, copper, zinc, gold and silver, at the rate of 850 tons per 24 hr., and produces lead, copper, zinc and iron concentrates by selective flotation met

    Jan 1, 1935

  • AIME
    Operations Of A Mining Research Center

    By John F. Shaw

    The Denver Mining Research Center headquartered at Denver, Colo., is typical of the new research units recently activated as a result of increased emphasis by the U. S. Bureau of Mines on research con

    Jan 3, 1962

  • AIME
    Lake George and Lake Champlain Paper - The Wheeler Process for Welding Iron and Steel without the Use of Fluxes

    By D. Torrey

    Considering the two great interests of to-day, in iron upon the one hand and steel upon the other, and recognizing with measurable distinctness the peculiar fitness of each for special services to whi

    Jan 1, 1879

  • AIME
    Mining Engineering Reporter

    * Kennecott Copper Corp. gets Charles R. Cox as president on Jan. 1. Mr. Cox is resigning his position as president of Carnegie-Illinois to take the new post with Kennecott, left vacant by the death o

    Jan 1, 1950

  • AIME
    Extractive Metallurgy Division - Electric Furnace Melting of Copper at Baltimore

    By Peter R. Drummond

    THE final casting of refined copper has been re-J- stricted for generations by the following sequence of operations: Filling the reverberatory furnace, melting, skimming, blowing or flapping, and poli

    Jan 1, 1952

  • AIME
    Magnetic Attraction Of Stacked Drill Rods

    By John L. Baum

    GEOLOGISTS and engineers working around a diamond drill rig have often had the opportunity to observe the magnetic attraction of drill rods pulled out of the hole for core removal. This is sometimes a

    Jan 12, 1954

  • AIME
    Discussion of Papers Published Prior to 1954 - Alkali Reactivity of Natural Aggregates in Western United States (1953) 196, p. 991

    By William Y. Holland, Roger H. Cook

    Dexter H. Reynolds (Chapman and Wood, Mining Engineers and Consulting Geologists, Albuquerque, N. M.)—A number of questions are raised by conclusions and inferences made in the above-mentioned paper.

    Jan 1, 1955

  • AIME
    Part VII – July 1969 - Papers - A Generalized Integral-Profile Method for the Analysis of Unidirectional Heat Flow During Solidification

    By A. W. D. Hills

    This paper describes the development of a generalized integral-Wofile method for the analysis of heat transfer dwing solidification. The method is extremely flexible, and can be applied to a wide rang

    Jan 1, 1970

  • AIME
    New York Paper - Flameless Combustion

    By Carleton Ellis

    The problem of the influence of hot surfaces upon gaseous combustion is one which, from a purely scientific standpoint, has engaged, for many years past, the attention of Prof. William A. Bone, of Lee

    Jan 1, 1913

  • AIME
    What Should Be The Long-Range R&D Mission For The Minerals Industries? - A Look To 1980-And Beyond

    Research and Development, once considered a luxury item only for well-heeled companies, has in the last two decades come into its own as a vital contributor to the fortunes of electronic, automotive,

    Jan 1, 1968

  • AIME
    Institute of Metals Division - The Interaction Parameter for Solutions of Carbon and Chromium in Austenite at 1000°C (TN)

    By J. S. Kirkaldy, R. J. Brigham

    AS part of a program to investigate the diffusive properties of dilute ternary austenites we have made a determination of the effect of chromium on the activity of carbon in ? iron. Samples of pure

    Jan 1, 1963

  • AIME
    Papers - - Production Engineering - Method for Determining Fluid Movement in Wells (T. P. 1911, Petr. Tech., July 1945, with discussion)

    By Sherman L. Pease

    An inexpensive and relatively rapid method that can be used by field crews is described. Fluid movement is determined by releasing a tracer (dye) in the well at a predetermined level and, after an int

    Jan 1, 1946

  • AIME
    Papers - - Production Engineering - Method for Determining Fluid Movement in Wells (T. P. 1911, Petr. Tech., July 1945, with discussion)

    By Sherman L. Pease

    An inexpensive and relatively rapid method that can be used by field crews is described. Fluid movement is determined by releasing a tracer (dye) in the well at a predetermined level and, after an int

    Jan 1, 1946