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  • AIME
    Pyrometer Porcelains And Refractories

    By R. W. Newcomb

    THE constancy of calibration, and to a great extent the life, of a thermoelement is dependent on the suitability of the primary protecting tube in which the wires are mounted, particularly when used a

    Jan 9, 1919

  • AIME
    Twenty Centuries of Pumping

    By Sheldon P. Wimpfen, Ralph H. Sweefser

    FOR centuries the pumping of water has been one of the chief problems to be overcome by the persistent men who win the mineral wealth of the world. Profitable operations have often been forced to susp

    Jan 1, 1948

  • AIME
    Reservoir Engineering – General - The Fry In Situ Combustion Test-Performance

    By R. G. Jones, W. L. Kinney, R. E. Schilson, R. S. Wilson, G. A. Clark, H. Suralo

    This paper discusses the results of the Fry conventional or cocurrent in situ combustion test, which was conduct-ed in a 3.3-acre inverted five-spot. The depth of the formation was between 880 and 936

    Jan 1, 1966

  • AIME
    Tests for Determining Susceptibility to Stress-Corrosion Cracking

    By R. B. Mears, G. F. Sagar, R. H. Brown

    There are well recognized procedures for determining the various tensile, fatigue, and other mechanical properties of the common structural materials. This makes it possible for engineers to design st

    Jan 1, 1945

  • AIME
    Institute of Metals Division - Faults in the Structure of Copper-Silicon Alloys - Discussion

    By C. S. Barrett

    W. Hofmann, J. Ziegler, and H. Hanemann—Having dealt with the same alloys in the winter 1941 to 1942, we want to give a short report on the generating of the hexagonal kappa phase by deforming the sup

    Jan 1, 1951

  • AIME
    Reservoir Engineering – Laboratory Research - The Effect of Fluid-Flow Rate and Viscosity on Laboratory Determinations of Oil-Water Relative Permeabilities

    By C. R. Sandberg, L. S. Gournay, R. F. Sippel

    The effect of fluid-flow rate and fluid viscosity on oil-water relative permeability determinations was studied using the "dynamic flow technique." In this work relative per-nleability curves were obt

  • AIME
    Stress Rupture Of Heat-Resisting Alloys As A Rate Process

    By A. S. Nowick, E. S. Machlin

    ONE of the main criteria used to rate the heat-resisting properties of alloys is stress rupture.1 During a stress-rupture test a tensile specimen is held under a constant load at a constant temperatur

    Jan 1, 1947

  • AIME
    Metal Mining - St. Joseph Lead Co. Indian Creek Development

    By C. Kremer Bain

    DURING the past several years of diamond drilling in Washington County, Mo., the St. Joseph Lead Co. has discovered a concentration of commercial lead-zinc ore at four different points within an area

    Jan 1, 1954

  • AIME
    Progress in Aluminum Alloys

    By Sam Tour

    OF the new alloys achieving commercial prominence during the year, an aluminum-silicon magnesium casting alloy, which is similar in many respects to the 4 per cent copper alloy, developed about 1921,

    Jan 1, 1932

  • AIME
    Draw Control At San Manuel

    By R. L. Tobie, E. K. Staley

    Because of high production demands at San Manuel mine (approximately 40,000 tpd) and the relatively narrow grade range of the orebody, no attempt is made by the company to mine selectively. The caving

    Jan 6, 1967

  • AIME
    Part VIII – August 1968 - Papers - The Effect of Ferromagnetism upon Creep Deformation of Alpha Iron and Its Solid-Solution Alloys

    By T. Watanabe, S. Karashima, H. Oikawa

    Creep tests of a! iron and its solid-solution Fe-Mo, Fe-Co, and Fe-Si alloys with bcc structure were conducted under constant stresses in ferromagnetic and paramagnetic temperature regions above 0.5T,

    Jan 1, 1969

  • AIME
    Members Of The Institute In Military Service (f00b9204-eb64-43ab-9d1c-19222d48c273)

    (The following -list, contains the navies of those members of the Institute of whose connection with military service we have only recently become acquainted; it also includes the names of a few who h

    Jan 4, 1918

  • AIME
    Manganese Ore by the Bradley Process

    By Carl Zapffe

    THE object of the Bradley process is to free manganese oxide from its associated gangue and separate the contained iron oxide by dissolving the manganese and precipitating it from the solution. '

    Jan 1, 1929

  • AIME
    Producing - Equipment, Methods and Materials - Propping Agent Transport in Horizontal Fractures

    By J. L. Huitt, D. K. Lowe

    This laboratory flow study covers propping agent transporl in horizontal fractures as influenced by the characteristics of the propping particles, fluid and fracture. Correlations are presented for th

    Jan 1, 1967

  • AIME
    The Chemical Control Of Slimes.

    By Harrison Everett Ashley

    (Pittsburg Meeting, March, 1910.) Slimes are usually defined as all material passing a certain-sized sieve, which is invariably the finest sieve employed by each metallurgist in his tests; 100-mesh a

    Aug 1, 1910

  • AIME
    Official Institute Reports for the Year 1934

    Herewith are transmitted the joint report of the Treasurer and Finance Committee for 1934 and the reports for the same year of the Chairmen of the following Committees: Admissions, Membership, Papers

    Jan 1, 1934

  • AIME
    Method of Curtailing Forces at the Copper Queen - Discussion

    THE CHAIRMAN (F. K. COPELAND,* Chicago, Ill.).-At this particular time conditions existing in this, country, and elsewhere, make all questions of milling or smelting or mining, or anything else, absol

    Jan 12, 1919

  • AIME
    Mining - Lucky Friday Mine: History, Geology, and Development

    By William T. Folwell

    The Lucky Friday mine east of Mullan, Idaho, is an outstanding example of a property in the Coeur dlAlene district where a small and insignificant-appearing silver-lead-zinc vein at the surface has ch

    Jan 1, 1959

  • AIME
  • AIME
    Technical Notes - X-Ray Crystallographic Data on As2Te3

    By C. W. Spencer, J. Singer

    A PARTIAL phase diagram for the As-Te system is given in Hansen.' The only compound reported is As2Te3, melting at 362°C. Stoichiometric quantities of reagent-grade elements were reacted in evacu

    Jan 1, 1956