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  • AIME
    Past Chairmen of Divisions (928d3e14-5264-4ceb-8428-0daf0ec23c43)

    PAST AND PRESENT CHAIRMEN OF DIVISIONS Institute of Metals Iron and Steel Mineral Industry Industrial Minerals Year Division Petroleum Division Division Coal Division Education Division Division 19

    Jan 1, 1943

  • AIME
    Problems In The Geology Of Ore-Deposits

    By J. H. L. Vogt

    TABLE OF COKTENTS. [ ]

    Jan 1, 1902

  • AIME
    Institute of Metals Division - Note on the Existence of UTa10C4 (TN)

    By E. Parthe, J. P. Pemsler

    TWO references can be found in the literature concerning the ternary system uranium-tantalum -carbon. C. H. Schramm, P. Gordon, and A. R. Kaufmam reported in this Journal1 on the existence of the tern

    Jan 1, 1960

  • AIME
    Part VI – June 1969 - Papers - Surface Self-Diffusion of Nickel

    By P. Douglas, G. M. Leak, B. Mills

    The sinusoidal surface relaxation technique has been used to measure the surface self-diffusion coefficient of spectroscopically pure nickel over a wide temperature range under a hydrogen atmosphere.

    Jan 1, 1970

  • AIME
    Future of Iron Mining in the Lake Superior District

    By Franklin G. Pardee

    IN 1920 the Minnesota Tax Commission estimated a reserve of 1,341,674,538 long tons of iron ore in Minnesota, the Michigan State Tax Commission report showed 199,092,855 long tons in reserve in that s

    Jan 1, 1933

  • AIME
    Part IV – April 1968 - Communications - Solubility and Interstitial Migration of Oxygen in Bcc Iron

    By H. J. Engell, W. Frank, A. Seeger

    SWISHER and ~urkdogan' have determined the solubility of oxygen in a iron. They found it to lie between 7 and 10.5 at.-ppm at 881°C. Using earlier work on the permeability of oxygen in bcc iron,&

    Jan 1, 1969

  • AIME
    Institute of Metals Division - Constitution of Iron-Boron Alloys in the Low Boron Range

    By M. E. Nicholson

    The solid solubility of boron in iron has been determined by saturating iron with respect to FeyB at several temperatures from 870° to 1135 C. In alpha iron the maximum solubility was found to be 0.00

    Jan 1, 1955

  • AIME
    Papers - X-ray Studies n the Nickel-chromium System (With Discussion)

    By Frank Foote, V. H. Nordstrom, Eric R. Jette, Bernard Queneau

    The nickel-chromium alloys form the base for many industrial heating alloys, so that this system is of considerable practical importance. The literature on these alloys, however, contains much conflic

    Jan 1, 1934

  • AIME
    The Behavior of Stibnite in an Oxidizing Roast

    By H. O. Hofman

    THE leading antimony mineral is stibnite. In smelting stibnite ore two processes are available, precipitation and roasting-reduction. The former is suited only for high-grade ores. As low-grade ores a

    Jan 1, 1916

  • AIME
    The Conference Department At Lehigh University.

    By Henry S. Drinker

    (Canal Zone Meeting, November, 1910.) FEW men reach middle life without having had the experience of failure in one or more undertakings; and most of us can look back with gratitude to help or advice

    Jan 1, 1911

  • AIME
    Past Chairmen of Divisions

    PAST AND PRESENT CHAIRMEN OF DIVISIONS Institute of Metals Iron and Steel Mineral Industry Industrial Minerals Year Division Petroleum Division Division Coal Division Education Division Division 19

    Jan 1, 1942

  • AIME
    Engineer's Opportunities in the Petroleum Industry

    By E. B. REESER

    EFFICIENCY is the foundation on which the prosperity of this Nation must be built. Your organization and the members thereof are constantly thinking of Gays and means whereby greater efficiency may be

    Jan 1, 1931

  • AIME
    Production Control?a Problem in Engineering

    By O. E., Kiessling

    THE better control of production was made the topic for a special program of the annual meeting of the Institute last February. In the discussion at that meeting it was brought out that in many branch

    Jan 1, 1928

  • AIME
    American Copper Costs in 1931

    By G. W. Tower

    THE YEAR 1931 was for most American copper producers one of restricted output but extremely low production cost.. When compared with 1929, the marked reductions in costs achieved in 1931, operating at

    Jan 1, 1932

  • AIME
    PART IV - Communications - Massive Martensite Reaction in Eutectoid Iron-Copper Alloys

    By J. A. Lund, A. M. Lawson

    THE structures of quenched eutectoid and hypereu-tectoid Fe-Cu alloys have been examined by X-ray diffraction and by optical and electron microscopy. The relevant portion of the Fe-Cu phase diagram is

    Jan 1, 1967

  • AIME
    Pros and Cons of Teaching Engineering - Top-Level Engineers Are Demanded and Industry Wants Them Too

    By R. M. Brick

    EDUCATIONAL benefits for veterans of World War II have largely removed one of the two former barriers to a college education for everyone, namely financial means and intellectual capacity. This latter

    Jan 1, 1947

  • AIME
    Part V – May 1969 - Papers - Effect of 0.5 wt pct Cu Addition on the Quench-Aging Transformations in Zr-2.5 wt pct Nb(Cb) Alloy

    By K. Tangri, M. Chaturvedi

    The addition of 0.5 wt pct Cu to Zr-2.5 Cb alloy increases the as -quenched hardness of the hexagonal martensitic a' phase, produced by water-quenching bccß-Zr phase, by about 35 pct. This stre

    Jan 1, 1970

  • AIME
    Coal Mining In Washington

    By F. A. Hill

    Coal mining in the State of Washington offers many interesting problems for the mining engineer, due to the varied physical conditions occurring in different fields, and often in, the same mine. The d

    Jan 4, 1918

  • AIME
    Molybdenite Flotation Reagent Development At Climax, Colorado

    By O. A. Kiehn, C. A. Born, F. N. Bender

    Development of the flotation reagent scheme at Climax Molybdenum Company's mine at Climax Colorado is reviewed. Features of the mineralogy, milling practice and background of reagent changes are

    Jan 1, 1976

  • AIME
    Institute of Metals Division - Austenite Formation during Tempering and Its Effects on Mechanical Properties

    By E. F. Bailey, W. J. Harris

    THE temperature of the ferrite to austenite re-action is established frequently by continuous heating experiments. However, equilibrium studies of this reaction have demonstrated that austenite may fo

    Jan 1, 1951