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  • AIME
    The Constitution And Melting-Points Of A Series Of Copper-Slags.

    By Charles H. Fulton

    (Cleveland Meeting, October, 1912.) I. INTRODUCTION. THERE are comparatively few accurate data on the melting-or the freezing-point temperature of metallurgical slays, or on related physical phenome

    Dec 1, 1912

  • AIME
    Papers - Studies of Hadfield's Manganese Steel with the High-power Microscope (Howe Memorial Lecture)

    By John Howe Hall

    One's first thought, upon being chosen to deliver the Henry Mario Howe lecture, is of pride at being selected for this post of honor, but ther succeeds immediately a deep sense of the Obligation

    Jan 1, 1929

  • AIME
    Reservoir Engineering – Laboratory Research - An Experimental Study of Heat Flow in Steam Flooding

    By P. E. Baker

    An experimental study of heat flow in steam flooding was carried out with steam displacing water in a plane-radial fluid-flow model. Temperature distributions in the model reservoir, overburden, and s

    Jan 1, 1970

  • AIME
    Testing Round Carbon Drill Steel

    By Paul L. Russell

    THIS is a progress report of an experiment being undertaken in cooperation with the Bethlehem Steel Corp., the Crucible Steel Co., and the Rock Bit Sales and Service Co., involving heat treatment of t

    Jan 1, 1952

  • AIME
    Comments on Flotation-Cyanide Practice at Kirkland Lake

    J. H. HEGINBOTHAM, a, metallurgist of the General Engineering Co., talked on "Current Milling Practice at Kirkland Lake," at the December meeting of the Utah Section. The ore is enough alike through t

    Jan 1, 1934

  • AIME
    PART V - Papers - The Fatigue and Tensile Fracture of TD-Nickel

    By R. K. Ham, M. L. Wayman

    TD-Nickel has been broken in tension and in fatigue at voom temperature. Rod specimens failed in tension by necking, with axial cracks attributed to voids elongated in the extrusion direction. Fatigue

    Jan 1, 1968

  • AIME
    New York Paper - Calculation of Mine-Values

    By R. B. Brinsmade

    The following is an attempt to form a formula by which a mine can be quickly evaluated, aft,er all pertinent physical data have been collected from observations on the ground by a competent mining eng

    Jan 1, 1909

  • AIME
    The Depression Gold Rush

    By J. B. Knaebel, M. W. Von Bernewitz

    OUTSTANDING FACTORS that have largely induced the current great interest in the reopening of old mines and the search for new deposits are the increased relative value of gold, the certainty of a mark

    Jan 1, 1932

  • AIME
    13. The Mascot-Jefferson City Zinc District, Tennessee

    By Johnson Crawford, Alan H. Hoagland

    Zinc mining at Jefferson City began in 1854 with small scale production of oxidized ore from open pits. Significant production began in 1913 with the development of the Mascot Mine by the American Zin

    Jan 1, 1968

  • AIME
    Why is the Institute?

    By Joseph W. Richards

    ALTHOUGH bad grammar, the above query is probably, at the present moment, good sense. Why was the Institute started and why does it continue to exist? The small group of men who worked out the origina

    Jan 1, 1921

  • AIME
    Institute of Metals Division - High Speed Germanium-Silicon N-N Alloyed Heterodiodes

    By John Brownson

    Ge-Si N-N heterodiodes hare been built recently which show promise as high-speed logic devices. Low-resistivity germanium is deposited on silicon substrates held at temperatures above the germanium me

    Jan 1, 1965

  • AIME
    Present Tendencies in Smelting and Leaching Lead Ores

    By R. C. Canby

    JUDGE GRANT, in a delightful satire of his, says: "Boston is a state of mind." I think that this same statement might well be made of the metallurgy of lead. I was particularly impressed with this whe

    Jan 1, 1926

  • AIME
    Troy Paper - An Account of a Chemical Laboratory Erected at 'Wyandotte, Michigan, in the year 1863

    By W. F. Durfee

    In the year 1862 the author of this paper was called upon to design and superintend the erection and working of the machinery of an experimental works for the production of steel by a process

    Jan 1, 1884

  • AIME
    Institute of Metals Division - Transitions in Chromium - Discussion

    By W. C. Ellis, E. S. Greiner, M. E. Fine

    C. H. Samans and W. R. Ham (Chicago, Ill., and Dix-field, Maine, respectively)-—For several years we have been studying transitions of this basic type in metals, alloys, glasses, etc. Usually, however

    Jan 1, 1952

  • AIME
    Chicago Paper - Effervescing Steel

    By Henry D. Hibbard

    FoR the purpose of this paper all steels will be divided into two divisions: effervescing and non-effervescing. This classification must be borne in mind as many statements true of one class are not t

    Jan 1, 1920

  • AIME
    Discussion - Of Mr. Howe's Paper on Piping and Segregation in Steel Ingots (see Trans, xxxviii., 3)

    P. H. Dudley, Yew York, N. Y. (communication to the Secretary*) :—The characteristics of Professor Home's metallurgical papers are, that he is able, from the mass of confusing evidence on the sub

    Jan 1, 1909

  • AIME
    15. The Iron Mountain Mine, Iron Mountain, Missouri

    By John E. Murphy, Ernest L. Ohle

    Hematite-magnetite ore bodies at Iron Mountain, Missouri, have produced nearly 9 million tons of iron ore concentrates since 1844. The ore minerals occur principally as open-space filling in fractured

    Jan 1, 1968

  • AIME
    Chicago Paper - Mining Methods of Alaska Gastineau Mining Co.

    By G. T. Jackson

    The Alaska Gastineau Mining Co.'s mine is located at Perseverance, about 4 mi. east of Juheau, Alaska. Its property consists of a group of claims, the lode system traversing these claims for a di

    Jan 1, 1920

  • AIME
    Elements of a National Mineral Policy

    By C. K. Leith

    THE purpose of these conferences has been to find some basic principles to guide us in the chaos which confronts us, to arrive at elements of a national policy. None such exists, nor, as a matter of f

    Jan 1, 1933

  • AIME
    Institute of Metals Division - An Internal Friction Study of Low -Carbon Iron-Nickel-Carbon Alloys

    By P. G. Winchell, J. K. Jackson

    The strtcture of body-centered Fe-Ni-C alloys (0 to 16.5 wt pct Ni) containing less than 0.015 wt pct C was investigated by measuring the carbon-diffusion peak at low frequencies with a torsion pendul

    Jan 1, 1964