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  • AIME
    Ventilation at United Verde Mine

    By Oscar Glaeser

    THE mine and plant of the United Verde Copper Co., located in Yavapi County, at Jerome, Arizona, have been described in various technical publications and, therefore, a brief outline of its essential

    Jan 1, 1929

  • AIME
    Minerals Beneficiation - Ionic Size in Flotation Collection of Alkali Halides

    By M. C. Fuerstenau, D. W. Fuerstenau

    Studies of the collection of alkali and ammonium halides utilizing vacuum flotation techniques and contact angle measurements show that ionic size controls the flotation of techniquesthese halides wit

    Jan 1, 1957

  • AIME
    Canada Cement Co. Building Highly Automated Plant In Nova Scotia

    By A. O. Drysdale

    In Canada, the market for cement is not a national one but rather a collection of local or regional markets. Excess capacity on a national basis does not necessarily preclude a shortage on a regional

    Jan 4, 1965

  • AIME
    1963 Membership Directory

    MINING ENGINEERING presents the annual membership report of the Society of Mining Engineers; see page 109.

    Jan 7, 1963

  • 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
    Amine Flotation Of Sphalerite-Galena Ores

    By Herbert H. Kellogg

    RECENTLY the long-chain primary amines have been used extensively for the flotation of silicate minerals. The use of amines to float sulphide minerals has been investigated by several authors1-5,18 bu

    Jan 1, 1945

  • AIME
    Georgia Ocher In Portland Cement (4fcdab62-4a7c-4b5e-9b2e-f60205a92ab6)

    By David P. Hale, Guy W. Jordan

    HIGH-IRON cements have a number of advantages over cements carrying little or no iron. The presence of iron in Portland cement aids in the manufacture of the cement and also imparts certain advantageo

    Jan 1, 1939

  • AIME
    Institute of Metals Division - The Third Stage of Work Hardening in Aluminum Crystals Deformed at 196°K

    By A. Kelly, S. Sato

    Tensile tests have been performed on aluminum single crystals of 99.99 pct purity at 196°K. The resolved shear stress when the stress-strain curve becomes concave to the strain axis depends on orien

    Jan 1, 1960

  • AIME
    Technical Papers and Notes - Institute of Metals Division - Notes on the R-Phase

    By B. N. Das, J. B. Darby, P. A. Beck, Y. Shimomura

    A POWDER pattern for the (Cr, Mo, Co)R-phase annealed at 1200°C was reported in 1951.1 Through the courtesy of Prof. D. P. Shoemaker of Massachusetts Institute of Technology the authors became aware o

    Jan 1, 1959

  • AIME
    Measurement of Irreversible Potentials as a Metallurgical Research Tool

    By R. H. Brown

    EARLY workers attempted to study the structure of alloys by measurement of equilibrium electrode potentials in aqueous solutions containing ions of the metals from which the alloy was made.1 The metho

    Jan 1, 1940

  • AIME
    Cleveland Paper - Notes on the Metallography of Alloys

    By William Campbell

    In the olden days the making of alloys was an art, and the secrete of the craft were jealously guarded. To-day it has become a science, though the old ideas in regard to the secrets and formulæ are dy

    Jan 1, 1913

  • AIME
    Drainage

    By John K. Berry

    The handling and disposal of mine water is a much larger problem than is apparent at first glance. Many more tons of water are removed from underground coal mines in the United States each year than t

    Jan 1, 1973

  • AIME
    Institute of Metals Division - A Reinvestigation of the Chromium-Rich Region of the Titanium-Chromium System

    By Paul A. Farrar, Harold Margolin

    The system Ti-Cr has been re investigated From 40 to 100 pct Cr. The high-temperature modification of TiCr, was found to exist in the temperature range from 1365 where it terminates in the eutectoid

    Jan 1, 1963

  • AIME
    Institute of Metals Division - Study of a New Mode of Plastic Deformation in Zinc Crystals (Discussion, p. 1273)

    By J. J. Gilman

    Zinc monocrystals, when compressed nearly parallel to their basal planes (within 20), deform in a new way; and certain deformation markings, called "-bands," are typical of this new mode. Characterist

    Jan 1, 1956

  • AIME
    Institute of Metals Division - Effect on Fatigue of Gaseous Environments under Varying Temperature and Pressure

    By H. H. Smith, G. J. Danek, M. R. Achter

    Nickel, Type 316 stainless steel, and copper show decreases in reversed bending fatigue strength with increases in air and oxygen pressure. The leveling off of the log N us log p curve for nickel at

    Jan 1, 1963

  • AIME
    St. Louis Paper - October, 1917 - The Pyritic Deposits near Röros, Norway

    By H. Ries, R. E. Somers

    Bodies of pyritic ore in schistose rocks have long been known in different parts of the world. The several occurrences resemble each other in being usually of more or less lenticular shape, inclosed i

    Jan 1, 1918

  • AIME
    Magnetic Studies On The Precipitation Of Iron In Alpha And Beta Brass

    By Cyril Stanley Smith

    ON the 6th of February 1684, Dr. Martin Lister mentioned at a meeting of the Royal Society1 that "brass is magnetical," and promised to give an account of that assertion at some other time. He repeate

    Jan 1, 1941

  • AIME
    Papers - Copper and Brass - Alpha-phase Boundary of the Ternary System Copper-silicon-manganese (With Discussion)

    By Cyril Stanley Smith

    Although alloys of copper and silicon were examined several years ago,' and their excellent mechanical properties were shown, it was not until C. B. Jacobs 2 introduced manganese in small quantit

    Jan 1, 1930

  • AIME
    Papers - Metallography - Influence of Various Elements upon the Position of the Eutectoid in the Iron-carbon (Carbide) System ( Metals Technology, December 1943) (With discussion)

    By Carl L. Shapiro, Jerome and Strauss

    This is a critical examination of the theory that the amount of carbon necessary to form the iron-carbon (carbide) eutectoid is lowered by the addition of any carbide-forming element. Although this th

    Jan 1, 1944

  • AIME
    Papers - Metallography - Influence of Various Elements upon the Position of the Eutectoid in the Iron-carbon (Carbide) System ( Metals Technology, December 1943) (With discussion)

    By Jerome and Strauss, Carl L. Shapiro

    This is a critical examination of the theory that the amount of carbon necessary to form the iron-carbon (carbide) eutectoid is lowered by the addition of any carbide-forming element. Although this th

    Jan 1, 1944