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  • AIME
    Liquid-oxygen Blasting at Chuquicamata, Chile Liquid-oxygen Blasting at Chuquicamata, Chile Liquid-oxygen Blasting at Chuquicamata, Chile Liquid-oxygen Blasting at Chuquicamata, Chile

    By H. C. Schultz

    CERTAIN local conditions were known to govern in large measure the successful adaptation of liquid-oxygen explosives to the large-scale blasting at Chuquicamata. The wide variation in hardness of the

    Jan 1, 1928

  • AIME
    Papers - Mining Geology - Occurrence of Quicksilver Orebodies (With Discussion)

    By C. N. Schuette

    The material presented in this paper has been gathered by the writer during a long and varied experience on matters pertaining to the quicksilver industry. During the past 18 years he has visited prac

    Jan 1, 1931

  • AIME
    Failures of Cast-iron Kettles in Lead Refining

    By Carl Swartz

    FOR many years kettles used in the melting and refining of lead and other nonferrous metals and alloys have been made of cast iron. The logic of this probably lies in the fact that cast iron has been

    Jan 1, 1931

  • AIME
  • AIME
    A Petrographic Study of Lead and Copper Furnace Slags

    By Roy McLellan

    THE slags derived from the smelting of lead and copper ores are composed essentially of silicates. The problems arising from the smelting of these ores consequently involve the study of silicate fusio

    Jan 1, 1930

  • AIME
    Papers - Thermodynamic Properties of Compounds of Magnesium and Group IVB Elements

    By P. Beardmore, B. W. Howlett, B. D. Lichter, M. B. Bever

    The heats of formation at 273°K of the compounds Mg2Ge, Mg2sn, and Mg2b, the heats of fusion and melting points of Mg2Sn and Mg2Pb, and the heats of solution of magnesium, germanium, and lead in liqui

    Jan 1, 1967

  • AIME
    The Ore Deposits of the Tri-State District (Missouri- Kansas Oklahoma) (With Discussion)

    By George M. Fowler

    THE Tri-State district, as outlined in this paper, refers to the entire mineralized area in southwestern Missouri, southeastern Kansas and northeastern Oklahoma (Fig. 1). The part of the district in M

    Jan 1, 1932

  • AIME
    Behavior Of Metal Cavity Liners In Shaped Explosive Charges

    By Walter H. Bruckner, George B. Clark

    SINCE the end of World War II interest has been increasing in the use of shaped charges in the mining industry and in other industries using explosives for blasting purposes. Shaped charges employ the

    Jan 1, 1947

  • AIME
    Blasting

    By Joseph S. Malesky

    The discovery and development of explosives mark one of the most important findings in the history of civilization. Without explosives our vast economic enterprise concerning the mining of coal, coppe

    Jan 1, 1981

  • AIME
    Increased Care Bears Further Fruit in Another Favorable Safety Record

    By John T. Ryan

    FOR the first ten months of 1942, on which data are available at the time this is written, the coal-mining industry achieved a most creditable safety record, and ha1 figures for the year may show a re

    Jan 1, 1943

  • AIME
    Los Alamos - The Town of Beginning Again - A behind-the-scenes story of life in the community built around the hidden laboratory where the A-bomb was made, and where nuclear research now goes forward

    By Marie Kinzel

    LOS ALAMOS, New Mexico, the birthplace f the atomic bomb, is one of the most famous-and mysterious-places in the world. It leaped into fame on Aug. 6, 1945, when the first atomic bomb burst over Hiros

    Jan 1, 1946

  • AIME
    Factors Involved In Heat-Treating A Magnesium Alloy - Introduction

    By J. T. Lapsley, I. I. Cornet, A. E. Flanigan, R. Hultgren, J. E. Dorn

    WITH the greatly expanding use of magnesium during the war, it appeared necessary to the War Metallurgy Committee that procedures of heat treating common magnesium casting alloys be investigated syste

    Jan 1, 1947

  • AIME
    Development of the Iron and Steel Industry on the Niagara Frontier

    By W. A. James

    NATURE endowed the Niagara Frontier with great resources but it was the molding of these resources by the early pioneers that assured its future development. This great industrial district of New York

    Jan 1, 1938

  • AIME
  • AIME
    Hardening and Tempering of Steels Containing Carbides of Low Solubility, Especially Vanadium Steels

    By E. Houdremont

    THE different influences exerted by the various alloying elements in iron and iron-carbon alloys give rise to a great number of complexities, which are difficult to grasp. It is important therefore to

    Jan 1, 1934

  • AIME
    Institute of Metals Division - Temperature Dependence of Grain Migration in High-Purity Lead Containing Small Additions of Tin

    By J. W. Rutter, K. T. Aust

    The temperature dependence of the rate of grain boundary migration was measured in bicrystals of zone-refined lead containing from 20 to less than 1 ppm by wezght of tin. The apparent activation ene

    Jan 1, 1960

  • AIME
    Arizona Paper - Geology of the Warren Mining District (with Discussion)

    By Y. S. Bonillas

    Page I. Introduction.......................... 286 II. Physiography.......................... 286 : 111. Introductory Geology...................... 287 IV. Rocks of the District ..................

    Jan 1, 1917

  • AIME
    Production Engineering and Research - An Introductory Discussion of the Reservoir Performance of Limestone Formations (T. P. 1791, Petr. Tech., Jan. 1945)

    By R. U. Fitting, A. C. Bulnes

    Field experience with limestone and sandstone production indicates the existence of wide differences between the reservoir behavior of these two types of formation. Little attention appears to have be

    Jan 1, 1945

  • AIME
    Drilling - Equipment, Methods and Materials - A Mathematical Model of a Gas Kick

    By J. L. LeBlanc, R. L. Lewis

    This study presents an analysis of annular backpressure variations associated with controlled gas kicks and their pronounced effect on casing .strings and exposed under lying formations. A mathemat

    Jan 1, 1969

  • AIME
    A Graphic Solution Of D's Arcy's Formula For The Transmission Of Compressed Air In Pipes.

    By NATHANIEI HERZ

    (Cleveland Meeting, October, 1912.) THE formula very frequently used for computing the economical size of pipe to transmit compressed air is that of D'Arcy, as follows: d5(p1-p2)/w1l D-c w11

    Dec 1, 1912