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  • AIME
    Iron and Steel Division - The Density of Liquid Iron from the Melting Point to 2500°K

    By J. A. Cahill, A. D. Kirshenbaum

    Using an alumina or zirconia crucible with an alumina sinker or a molybdenum sinker coated with zirconium dioxide, the density of liquid iron was determined by the immersed-sinker method over the temp

    Jan 1, 1962

  • AIME
    Report Of The Committee On Papers And Publications For 1916

    During the year 1915 the Committee received 161 manuscripts, which were treated as follows: 3 accepted for. New York Meeting (110th) . 64 accepted for San Francisco Meeting (111th) 49 accepted fo

    Jan 2, 1916

  • AIME
    Technical Notes - Thermal Conductivity of Nodular Iron

    By M. J. Sinnott

    WITH the advent of nodular iron as an engineering material, considerable interest has been shown in developing this material for various applications. Generally the strength, hardness, or ductility ar

    Jan 1, 1954

  • AIME
    Part XII – December 1969 – Communications - Magnetic Susceptibility and X-Ray Diffraction Determinations of Solid Solutions in the System CoCr2 S4-NiCr2 S4

    By S. S. Lisnyak, B. D. Lichter

    An important question in the study of the "hot corrosion" phenomenon (i.e., accelerated oxidation of Ni-Cr-base and Co-Cr-base "superalloys" in the presence of sulfur) is the condition of formation an

    Jan 1, 1970

  • AIME
    Part V – May 1968 - Papers - The Yttrium-Carbon System

    By O. N. Carlson, W. M. Paulson

    A phase diagram is proposed for the Y-C system based on the vesults of thermal analyses, microscopic obsevvations, and X-ray diffraction studies. Three intermediate phases occur in the system: a con

    Jan 1, 1969

  • AIME
    Hypothesis For Different Floatabilities Of Coals, Carbons, And Hydrocarbon Minerals

    By Shiou-Chuan Sun

    THE fact that coals of different ranks and even of the same rank differ greatly in their amenability to froth flotation is well known. In recognition of the need for an explanation of this phenomenon,

    Jan 1, 1954

  • AIME
    Forthcoming Meetings Of Societies (bba576cd-9264-4d41-b56f-8aec3fad7eb3)

    Organization Place Date 1917 American Institute of Architects Philadelphia,.,; Pa. Dec. 26-29 American Society of Mechanical Engineers New York City. Dec. 26-29 American Mining Congress State Chap

    Jan 11, 1917

  • AIME
    PART IV - Calculation of Elastic Anisotropy in Rolled Sheet

    By Y. C. Liu, G. A. Alers

    Using X-ray pole-figure information and the single-crystal elastic constants, the angular variation of an elastic modulus in a polycrystal can be calculated and compared to measured clalues. This proc

    Jan 1, 1967

  • AIME
    Twinning in Beryllium, Magnesium, Zinc and Cadmium (99d28df4-aea6-4721-ac13-393e12455a8f)

    By C. H. Mathewson

    BERYLLIUM, magnesium, zinc and cadmium, together with mercury, constitute a coherent sub-group of the periodic system and these metals, excepting mercury; have been studied in sufficient detail by the

    Jan 1, 1928

  • AIME
    MEXICO'S Metallic Ore Deposits

    By T. P. Clendenin

    THE northerly two thirds of Mexico falls into five main physiographic divisions, illustrated on the accompanying map. In form, these divisions are a series of strips, paralleling the northwest-southea

    Jan 10, 1951

  • AIME
    Review Of Coal-Dust Investigations

    By George Rice

    TEN years ago, October, 1914, the author had the privilege of giving an-illustrated address on investigations of coal-dust explosions1 to this Institute at one session of its fall meeting in Pittsburg

    Jan 3, 1925

  • AIME
    Preliminary Results On The Modeling Of Autogenous Grinding

    By L. G. Austin

    INTRODUCTION Autogenous (including semi-autogenous) grinding has probably been the most important single innovation in milling practice for the last twenty years. However, the design of these unit

    Jan 1, 1977

  • AIME
    Marquette’s Rodpeb Mill Pioneers New Grinding Method For Cement Industry

    By J. W. Moody

    The first Rodpeb mill ever built and placed in full scale successful operation went onstream in mid- 1960 at Marquette Cement Manufacturing Co.'s newly modernized portland cement production plant

    Jan 4, 1963

  • AIME
    New York Paper - Mining Methods at the Ashio Copper Mine (with Discussion)

    By Masayuje Otagawa

    The mining methods adopted in Japanese mines are less known to the mining world than those of other countries, owing to the geographical remoteness, but they present many features of interest to minin

    Jan 1, 1923

  • AIME
    New York Paper - Mining Methods at the Ashio Copper Mine (with Discussion)

    By Masayuje Otagawa

    The mining methods adopted in Japanese mines are less known to the mining world than those of other countries, owing to the geographical remoteness, but they present many features of interest to minin

    Jan 1, 1923

  • AIME
    Part X – October 1968 - Papers - High Damping Capacity Manganese-Copper Alloys. Part 1-Metallography

    By P. M. Kelly, E. P. Butler

    Four Mn-CLL alloys, containing 60, 70, 80, and 90 pct Mn, respectively, have been examined in the quenched and the quenched and aged conditions using electron microscopy and electron, neutron, and X-r

    Jan 1, 1969

  • AIME
    Papers - An Electron Diffraction Study of Anodic Films (T. P. 1158)

    By R. A. Harrington, H. R. Nelson

    The: structure of anodic films formed on aluminum and other metals under varied conditions is not well known despite the wide use of such films both as protective coatings and as the dielectric medium

    Jan 1, 1940

  • AIME
    Papers - An Electron Diffraction Study of Anodic Films (T. P. 1158)

    By R. A. Harrington, H. R. Nelson

    The: structure of anodic films formed on aluminum and other metals under varied conditions is not well known despite the wide use of such films both as protective coatings and as the dielectric medium

    Jan 1, 1940

  • AIME
  • AIME
    Institute of Metals Division - Compositional Control of Phases Precipitating in Complex Austenitic Alloys

    By W. C. Hagel, H. J. Beattie

    Phases present at 2200° and 1500°F (1204° and 816°C) were identified in sixty wrought developmental austenitic alloys possessing wide compositional variations. The bases were iron-, cobalt-, and nicke

    Jan 1, 1965