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  • AIME
    Part VII – July 1969 – Communications - A Method for Producing Small Grain Size in Super-purity Aluminum

    By M. B. Kasen

    eralized strain equation appear quite different they are really identical. This identity can be shown in a simple mathematical rearrangement. Referring to Eq. [I], the substitution of ln(1 +?E) for ?

    Jan 1, 1970

  • AIME
    Minerals Beneficiation - Effect of Chemical Reagents on the Motion of Single Air Bubbles in Water

    By C. H. Wayman, D. W. Fuerstenau

    The effect of bubble size and concentration of certain reagents on the terminal velocity, shape, path, and drag coefficients of single air bubbles in distilled water has been investigated. Bubbles of

    Jan 1, 1959

  • AIME
    Institute Committees (3d8b4f3e-5449-4ade-b964-7133f04b60e2)

    IRON AND STEEL COMMITTEE ALBERT SAUVEUR, Chairman A. A. STEVENSON, Vice-Chairman HERBERT M. BOYLSTON, Secretary, Abbot Bldg., Cambridge, Mass. Guilliaem Aertsen, Henry M. Howe, E. Gybbon Spilsbury

    Jan 6, 1914

  • AIME
    Institute of Metals Division - Titanium-Manganese System (Discussion page 1566)

    By R. I. Jaff, H. R. Ogden, D. J. Maykuth

    A phase diagram for alloys containing from 0 to 66.9 pct Mn was determined. Two compounds, tentatively labeled 6 and y, were found in this range. The 6 compound is located at about 66.9 pct Mn and mel

    Jan 1, 1954

  • AIME
    Institute of Metals Division - The Free Energy Change Accompanying the Martensite Transformation in Steels

    By J. C. Fisher

    Martensite transformations in steels and other alloys are characterized in part by the absence of composition changes during the growth of a new phase. Transformation occurs rapidly, and there is insu

    Jan 1, 1950

  • AIME
    Minerals Beneficiation - Flotation Characteristics of Hematite, Goethite and Activated Quartz with 18-Carbon Aliphatic Acids and Related Compounds

    By S. R. B. Cooke, H. S. Choi, I. Iwasaki

    In a previous article1 the function of various fatty acids as collectors for iron ores was reported for the two alternate processes; (a) the flotation of iron-oxide minerals, and (b) the flotation of

    Jan 1, 1961

  • AIME
    Alphabetical List Of Members

    [A Aall, Christian H., M49 A Dir, Smelt & Ref, Am. Metal Climax, Inc., 1270 Ave. of the Americas, New York 20, N. Y. Aaroe, S. L., A54 A VP, W. S. Tyler Co. of Canada Ltd., P. O. Box 100, St. Cath

    Jan 1, 1961

  • AIME
    The Smelting Of Copper 'ores In The Electric Furnace.

    By Dorsey Lyon

    I. INTRODUCTION. In presenting, this paper the writers wish to call attention first of all to the fact that the electric furnace was not developed as a competitor of the combustion furnace, but: 1.

    Jan 8, 1913

  • AIME
    Minerals Beneficiation - Comparative Results with Galena and Ferrosilicon at Mascot

    By J. H. Polhems, R. B. Brackin, D. B. Grove

    THE heavy media separation process plays an outstanding role in the concentration of 4000 tons of zinc ore per day at the Mascot mill of the American Zinc Co. of Tennessee. Of the total tonnage, 72 pc

    Jan 1, 1952

  • AIME
    Institute of Metals Division - An Evaluation of Two Least-Squares Methods for Precision Determination of Hexagonal Lattice Parameters from Debye-Scherrer Patterns

    By H. M. Otte, A. L. Esquivel

    A new leasl-squares method is Presented for determining lattice parameters of hexagonal or tetragonul structures. The method is adapted for use on electronic computers and involves a reiterative proce

    Jan 1, 1965

  • AIME
    Philadelphia, June 1876 Paper - The Southeastern Missouri Lead District

    By G. C. Broadhead

    The lead district of Southeast Missouri covers an area of over 3000 square miles, including Maries County on the west, Jefferson on the east, Franklin on the north, and part of Madison on the south, o

  • AIME
    The Southeast Missouri Lead District

    By G. C. Broadhead

    THE lead district of Southeast Missouri covers an area of over 3000 square miles, including Maries County on the west, Jefferson on the east, Franklin on the north, and part of Madison on the south, o

    Jan 1, 1877

  • AIME
    A Survey of Methods for Determining Depth of Magnetic Ore Bodies

    By David Keys

    THE actual procedure in estimating depth of overburden from mag-netic observations made on the surface will vary with the form of the deposit and any theoretical discussion will apply only so far as t

    Jan 1, 1937

  • AIME
    Coal - Subsurface Disposal of Mine Water

    By Robert Stefanko

    With passage of the Clean Streams Act of the Commonwealth of Pennsylvania and its impact on the coal industry, considerable research has been conducted to explore various approaches to the problem, in

    Jan 1, 1971

  • AIME
    Discussion - Institute of Metals Division (61d8ca0a-b6df-4853-8e47-95cc87e9ac4b)

    K. T. Aust and J. W. Rutter (General Electric Research Laboratory)—We find it difficult to reconcile the activation energies determined by Gifkins with his general conclusion that "migration during bo

    Jan 1, 1961

  • AIME
    Candelaria, Nevada - Candelaria Silver Mine Mineral County, Nevada The Rebirth Of A Mining Camp

    By Robert L. Akright

    LOCATION AND HISTORY The Candelaria silver mine is located in an arid, isolated desert setting in Sections 3 and 4, T.3N., R.35E., and Section 33, T.4N., R.35E., Mineral County, Nevada (Fig. 1).

    Jan 1, 1985

  • AIME
    Part II – February 1969 - Papers - Phase Transformations and Magnetic Domains in RbFeF3

    By H. J. Levinstein, H. J. Guggenheim, C. D. Capio

    An optical incestigation of the phase transformations in RbFeF, has been conducted. Details of the ferromagwetic phase transition and the metamagnetic state are disczrssed. The three-dimensional ma

    Jan 1, 1970

  • AIME
    Institute of Metals Division - Upper Nose Temper Embrittlement of a Ni-Cr Steel (Discussion 1316)

    By L. D. Jaffe, D. C. Buffum

    EARLIER the authors and coworkers had pre sented data on isothermal temper embrittlement of an SAE 3140 steel?' In that work, however, attention was concentrated on embrittlement at 575°C and bel

    Jan 1, 1958

  • AIME
    Technical Papers and Notes - Institute of Metals Division - Hydrogen In Titanium-Aluminum Alloys

    By L. W. Berger, R. I. Jaffee, D. N. Williams

    The effects of hydrogen on the properties of binary Ti-A1 alloys containing 2.5, 5, and 7 pct aluminum and ternary alloys of the same compositions with added interstitial elements oxygen, nihrogen, an

    Jan 1, 1959

  • AIME
    Technical Papers and Notes - Institute of Metals Division - Hydrogen In Titanium-Aluminum Alloys (48d154a8-a0a9-457f-bc95-bb9ed2647470)

    By L. W. Berger, and R. I. Jaffee, D. N. Williams

    The effects of hydrogen on the properties of binary Ti-A1 alloys containing 2.5, 5, and 7 pct aluminum and ternary alloys of the same compositions with added interstitial elements oxygen, nihrogen, an

    Jan 1, 1959