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  • AIME
    Translators’ Preface

    THERE are three objectives in translation of works of this character : to give a faithful, literal translation of the author's statements ; to give these in a manner which will interest the reade

    Jan 1, 1950

  • AIME
    Young's Modulus - Its Metallurgical Aspects

    By David J. Mack

    A SURVEY and critical appraisal of published information about Young's modulus was originally made by the writer because of a complete lack of information about this very important quantity in wo

    Jan 1, 1945

  • AIME
    Geographical List

    NORTH AMERICA ALASKA Anchorage.-Culver, H. W. Geehan, R. W. Strandberg, H. Chicagof.-Russell, J. C. Tracy, Q. S. College.-Dorsh, J. B. Fox, E. F. Joesting, H. R. Smith, M. C. Wilcox, H. G. Dougla

    Jan 1, 1941

  • AIME
    Geology Sessions Well Attended

    By Sherwin F. Kelly

    THE joint meetings of the Mining Geology Committee and the Society of Economic Geologists proved to be deservedly popular, and the interesting papers drew an attendance which strained the capacity of

    Jan 1, 1935

  • AIME
    Transactions Of Royal Canadian Institute

    Transactions of the Royal Canadian Institute, Vol. 12, Part 1, 1919, includes "The Reign of Law," by Dr. J. Murray Clark; "The Northern Interior of British Columbia and its Maps," by Rev. A. G. Morice

    Jan 7, 1919

  • AIME
    Iron and Steel Division - Liquid Miscibility Gap in Iron-Tin System (TN)

    By K. C. Mills, E. T. Turkdogan

    A number of investigators1 6 have noted the presence of a liquid miscibility gap in the Fe-Sn binary system. However, the first attempt to measure the

    Jan 1, 1964

  • AIME
    7. Mineral Exploration and Development in Maine

    By Robert S. Young

    During the last quarter-century, exploration for metallic deposits in Maine has been sporadic with peaks generally coinciding with periods of high metal prices. Known cases of regional or semi-regiona

    Jan 1, 1968

  • AIME
    Part IX – September 1969 – Papers - Liquid Immiscibility in Binary Indium Alloys

    By Cuppam Dasarathy

    The incidence of liquid inzmiscibility in binar)) indium alloys has been theoretically analyzed on the basis of the Hildebrand-Alott equation. Bedictions of miscibility or otherwise Imve in general be

    Jan 1, 1970

  • AIME
    Dry-Hot Versus Cold-Wet Blast-Furnace Gas Cleaning ,And Some Suggestions Regarding Construction Of Hot-Blast Stoves

    By Linn Bradley

    F. H. WILLCOX, Pittsburgh, Pa. (communication to the Secretary*). -We must keep in mind, in balancing the savings-to be anticipated by the most efficient combustion of gas, the best heat absorption by

    Jan 4, 1917

  • AIME
    Methods of Mining, Hauling, and Screening at the Mines of the Aldrich Mining Company, at Brilliant, Alabama

    By T. H. Aldrich

    THE Aldrich Mining Co. holds under lease from the Illinois Central R. R. Co. about 14,000 acres, in the East half of Township 12, Range 12 `V., in Marion county, Alabama, and owns other lands, of whic

    Jul 1, 1906

  • AIME
    Remarks on the Precipitation of Gold in a Reverberatory Hearth

    By R. W. Raymond

    WISH to call the attention of the Institute to a curious subject, brought to my notice last summer by Mr. Begger, the accomplished metallurgist of the smelting-works of the Boston and Colorado Company

    Jan 1, 1873

  • AIME
    Classification of Rocks for Longwall Caveability

    By Antoni Kidybinski

    Mechanical properties of the nether roof rocks play a substantial role in maintenance of mine openings. On longwall faces too low strength is a cause of rock- falls which bring about delays in face ad

    Jan 1, 1982

  • AIME
    Queen Nine-Hearth Roaster

    By J. Moore Samuel

    THE prospective change in ore receipts at the Copper Queen reduction works necessitated a careful study of conditions to determine the most economical method of smelting. The first step, calculating t

    Jan 7, 1921

  • AIME
    The Central Power-Station Of The De Beers Consolidated Mines, Ltd., Kimberley, South Africa.

    By Percy A. Robbins

    I. INTRODUCTION. THE central power-station. of the De Beers Consolidated Mines, Ltd., was designed and built under my supervision about five years ago. Since no detailed description of this plant has

    Mar 1, 1908

  • AIME
    Thacher Molding Process For Propeller Wheels And Blades

    By Enrique Touceda

    FOR a number of years prior to the world war, the firm of Geo. H. Thacher & Co., of Albany, N. Y., was engaged in the manufacture of marine and other gray-iron castings. At -the outbreak of the war t

    Jan 4, 1921

  • AIME
    Chicago Entertains Two Divisions

    By AIME AIME

    DOUBT in anyone's mind that this is the age of metals, industrially speaking, could easily have been dispelled by attending the National Metal Congress in Chicago, Sept. 22 to 26. Iron, copper an

    Jan 1, 1930

  • AIME
    Producing-Equipment, Methods and Materials - The Effect of Vertical Fracture on Well Productivity

    By V. J. Sikora, W. J. McGuire

    Several years ago, we used an electric analogue computer to study the effect of vertical fractures on the productivity of wells in expanding fluid-drive reservoirs. The results of this work were used

  • AIME
    Operations Research - A Practical Production Scheduling Model for the Taconite Industry

    By L. M. Kaas

    Production planning techniques, particularly a production scheduling model are proposed for use in taconite mining in Minnesota. Applications of the scheduling model, on a two-year mine plan, which ev

    Jan 1, 1967

  • AIME
    Precipitation And Reversion Of Graphite In Low-Carbon Low-Alloy Steel In The Temperature Range 900° To 1300°F.

    By C. O. Tarr, G. V. Smith, R. F. Miller

    METALLURGISTS have long recognized that the Fe3C type of carbide is not a stable phase in steel and that, given sufficient time, it will decompose with formation of graphite, at least at temperatures

    Jan 1, 1944

  • AIME
    Papers - Metallography - Precipitation and Reversion of Graphite in Low-carbon Low-alloy Steel in the Temperature Range 900°F to 1300°F (Metals Technology, June 1944) (With discussion)

    By G. V. Smith, C. O. Tarr, R. F. Miller

    Metallurgists have long recognized that the Fe3C type of carbide is not a stable phase in steel and that, given sufficient time, it will decompose with formation of graphite, at least at temperatures

    Jan 1, 1944