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  • AIME
    Minerals Beneficiation - Energy Input and Size Distribution in Comminution (Mining Engineering, Feb 1960, pg 161)

    By R. Schuhmann

    Distribution of material in the fine sizes of a comminution product generally is well represented by the empirical equation' y = 100 (x/k)a [1] in which y — cumulati

    Jan 1, 1961

  • AIME
    Part IV – April 1968 - Papers - The Influence of Temperature on the Lattice Parameters of the Intermetallic Compound Ag2AI

    By J. P. Neumann, Y. A. Chang

    Lattice parameter measurements of the hcp phase in the system Ag-A1 near the stoichiometric composition Ag2Al were carried out for specimens quenched from 825°K, annealed for 10 days at 453°K, and an

    Jan 1, 1969

  • AIME
    Discussions of Papers Published Prior to July 1960 - Energy Input and Size Distribution in Comminution; AIME Trans, 1960, vol 217, page 22

    By R. Schuhmann

    D. W. Fuerstenau (Associate Professor of Metallurgy, Dept. of Mineral Technology, University of California, Berkeley, Calif.) In his excellent paper, Dr. Schuhmann has proposed a mechanism for conlrni

    Jan 1, 1961

  • AIME
    Institute of Metals Division - Some Properties of Vanadium at Subatmospheric Temperatures (TN)

    By J. A. Hren, C. M. Wayman

    RECENT investigators have noted anomalous behavior in the electrical resistivity of vanadium below room temperature. Rostoker and Yamamoto1 in studying the vanadium-oxygen system hypothesized that th

    Jan 1, 1961

  • AIME
    Part I – January 1969 - Communications - The Chemical Activities of Chromium and Molybdenum in Solid Chromium-Molybdenum Alloys

    By M. J. Pool, R. K. Saxer, J. R. Myers, D. S. Dickson

    ThE equilibrium phase diagram of the Mo-Cr system, described by anssen,' indicates that chromium and molybdenum form a continuous series of solid solutions above 1673K. The liquidus and solid

    Jan 1, 1970

  • AIME
    Tungstates, Molybdates

    By William E. Ford, Edward Salisbury Dana

    The monoclinic Wolframite Group and the tetragonal Scheelite Group are included here. Wolframite Group WoIframite (Fe,Mn)W04 a : b : c = 0.8300 : 1 : 0.8678 B = 89' 22' Hiibnerite MnW04 0483

    Jan 1, 1922

  • AIME
    Potash Recovery From Brines By Solar Evaporation And Flotation

    By J. L. Huiatt, D. G. Foot

    The Bureau of Mines, U.S. Department of the Interior, investigated methods of recovering potash values from process and waste brines. Laboratory pan evaporation of four chloride brines produced crude

    Jan 1, 1985

  • AIME
    Hydrothermal Reduction Of Cr (VI) In Alkaline Media With CO, CH3OH, HCOO- And HCHO

    By J. Menashi, D. A. Douglas, A. S. Rappas

    Aqueous solutions of Na2Cr04 are reduced with CO to produce hydrous Cr2O3 and NaHCO3/Na2CO3. CH3OH, HCOO- and HCHO in the presence of CO2 also reduce Cr(VI) and yield similar products. It is shown tha

    Jan 1, 1986

  • AIME
    Madison River Plant No. 2

    "Located in Madison River Canyon, about 14 miles by road from Norris, Mont. Built in 1907 by Madison River Power Co.DAM: Rock filled wooden crib structure, 183 ft. long, 34 ft. high or 44 ft. to top o

    Jan 1, 1913

  • AIME
    Part VII - Papers - The Plastic Deformation of Single Crystals of Vanadium at 298° and 77°K

    By D. M. Boulin, E. S. Greiner

    Single crystals of vanadium were bent at 293" and 77°K to a maximum fiber strain of about 1 pct. Analysis of slip line and etch markings of- crystals deformed at either temperature show the slip plane

    Jan 1, 1968

  • AIME
    Natural Gas Technology - Equilibrium Vaporization Ratios for Nitrogen, Methane, Carbon Dioxide, Ethane, and Hydrogen Sulfide in a Natural Gas-Condensate System

    By R. H. Jacoby, M. J. Rzasa

    Experimental equilibrium vaporization ratios were obtained for nitrogen, methane, carbon dioxide, ethane, and hydrogen sulfide in natural gas-condensate systems. Two different overall mixture composit

    Jan 1, 1953

  • AIME
    Part VI – June 1968 - Papers - Dislocation Reactions in Anisotropic Bcc Metals

    By Craig S. Hartley

    Expressions are obtained for the energy changes associated with the reaction of (a& (111) slip dislocations on intersecting (110)planes in anisotropic bcc metals. An energy criterion for assessin

    Jan 1, 1969

  • AIME
    Technical Notes - Empirical Modification of the Gaudin-Meloy Equation

    By B. H. Bergstrom

    The Gaudin-Meloy1 size distribution equation requires the evaluation of two constants, xo and r. The common log-log representation of a screen analysis as cumulative weight percentage passing versu

    Jan 1, 1967

  • AIME
    Part IV – April 1968 - Papers - Microhardness and Microhardness Anisotropy of Tungsten

    By G. D. Rieck, G. H. G. Vaessen, D. L. Vogel

    Both doped and undoped tungsten single crystals exhibit hardness anisotropy with respect to the direction of testing in each of the crystallographic phes investigated. The hardness anisotropy of undo

    Jan 1, 1969

  • AIME
    Part IX - Papers - A Resistometric Study of Phase Equilibria at Low Temperatures in the Vanadium-Hydrogen System

    By D. G. Westlake

    The electrical resistance of a series of V-H alloys (0 to 3.5 at. pct H) has been measured over the temperature range G° to 360°. Interstitial impurities made contributions to the residual resistivity

    Jan 1, 1968

  • AIME
    Institute of Metals Division - Low-Temperature Wire Texture of Aluminum (TN)

    By Robert L. Fleischer

    A well known but unexplained experimental fact is the observation1 that aluminum shows a pure <111> wire texture, in contrast with other fcc metals, which have a mixed <100> <111> texture at moderate

    Jan 1, 1962

  • AIME
    Part III – March 1968 - Papers - Electroluminescence of Vapor-Grown GaAs and GaAs1-x Px Diodes

    By H. F. Gossenberger, J. J. Tietjen, J. J. Gannon, C. J. Nuese

    External quantum efficiency measurements at 300" and 77°K are presented for vapor-grown GaAs and GaAs1-xPx electroluminescent diodes as a function of junction depth and doping. In GaAs, external effi

    Jan 1, 1969

  • AIME
    Papers - Heat Capacity of Iron Carbide from 680 to 2980 K. and the Thermodynamic Properties of Iron Carbide (T. P. 1184, with discussion)

    By Henry Seltz, Cyril Wells, Hugh J. MacDonald

    Several investigators have measured the heat capacity of cementite, using different methods of attack, but the agreement between the values obtained cannot be considered good. Naeserl has made measure

    Jan 1, 1940

  • AIME
    Papers - Heat Capacity of Iron Carbide from 680 to 2980 K. and the Thermodynamic Properties of Iron Carbide (T. P. 1184, with discussion)

    By Henry Seltz, Hugh J. MacDonald, Cyril Wells

    Several investigators have measured the heat capacity of cementite, using different methods of attack, but the agreement between the values obtained cannot be considered good. Naeserl has made measure

    Jan 1, 1940

  • AIME
    Heat Capacity of Iron Carbide from 68° to 298° K. and the Thermodynamic Properties of Iron Carbide

    By Harry Seltz

    SEVERAL investigators have measured the heat capacity of cementite, using different methods of attack, but the agreement between the values obtained cannot be considered good. Naeser1 has made measure

    Jan 1, 1939