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  • AIME
    Institute of Metals Division - The Martensitic Transformation in Fe-31 wt Pct Ni

    By C. M. Wayman, J. F. Breedis

    The crystallography of the martensitic transformation in the Fe-30 Ni alloy was reinvestigated. The scatter in the habit Plane as determined from measurements on the mid-rib plane was smaller than rep

    Jan 1, 1962

  • AIME
    Various Phases of Activity in Iron and Steel Reviewed ? Introduction

    By John A. Gann

    THE Iron and Steel Division has shared in the general increased activity of the industry. The fall meeting at Chicago was not only well attended but particularly characterized by the virility and scop

    Jan 1, 1936

  • AIME
  • AIME
    Mineral Needs of a World at War

    By JOHN R. SUMAN

    IT appears now that the conflict with the totalitarian states will be a long-drawn-out struggle. The course of this war up to now indicates that this may well be the first major conflict where man pow

    Jan 1, 1942

  • AIME
    Part IV – April 1969 - Papers - A Study of Fe-C-N Alloys

    By S. A. Levy, J. D. Wood, J. F. Libsch

    A study of the preparation and characteristics of a sevies of Fe-C-N alloys has been conducted. X-ray, microhardness, and metallographic data from a series of single-phase alloys produced by controll

    Jan 1, 1970

  • AIME
    Coal - Present State of Coal Flotation in West Germany (MINING ENGINEERING, 1961, vol. 13, No. 9 p. 1069)

    By K. Sallmann

    Spurred by a variety of factors, coal flotation is making headway among the preparation plants of West Germany. The author gives some statistics on German coal flotation plants and information on the

    Jan 1, 1961

  • AIME
    Institute of Metals Division - Self-diffusion in Alpha and Gamma Iron

    By R. F. Mehl, C. E. Birchenall

    SINCE Maxwell1 first considered the self-diffusion process in 1872 its importance in the kinetic theory of matter has been recognized. Until the discovery of isotopes in 1913, a direct measurement of

    Jan 1, 1951

  • AIME
    Coal - Safety in the Mechanical Mining of Coal

    By W. J. Schuster

    Safety in coal mines depends largely upon adequate training of the foreman. Although management must provide modern and safe equipment and at all times keep mines in first class condition from a safet

    Jan 1, 1955

  • AIME
    Institute of Metals Division - Strengthening and Annealing of Austenite Formed by the Reverse Martensitic Transformation

    By George Krauss, M. Cohen

    The reverse martensitic transfomzation (i.e., the conversion of martensite to austenite on heating) was investigated in Fe-Ni alloys containing 30.5 to 33.5 wt pct Ni. The reversed austenite was found

    Jan 1, 1962

  • AIME
    Hazelton Paper - The Wilmington, Illinois, Coal-Field

    By Jasper Johnson

    Taken in all its bearings there is, perhaps, no more interesting coal-field than that locally known and designated as " Wilmington," both on account of the superior qualities of its product as a house

  • AIME
    The Wilmington, Illinois, Coal-Field

    By Jasper Johnson

    TAKEN in all its bearings there is, perhaps, no more interesting coal-field than that locally known and designated as " Wilmington," both on account of the superior qualities of its product as a house

    Jan 1, 1875

  • AIME
    79. Geology of the Nickel Mountain Mine, Riddle, Oregon

    By John T. Cumberlidge, Frederic M. Chace

    Nickel-bearing saprolite developed during the early Tertiary over a northeast trending ultramafic body of Jurassic age near Riddle in southwestern Oregon. The principal nickel mineral is garnierite, b

    Jan 1, 1968

  • AIME
    Institute of Metals Division - The Heat of Formation of the Intermetallic Compound AgMg as a Function of Composition (TN)

    By P. M. Robinson, M. B. Beaer

    The heat of formation at 0°C of the intermetallic compound AgMg as a function of composition has been determined by tin-solution calorimetry. In this technique, the heat of formation is determined as

    Jan 1, 1964

  • AIME
    Papers - Physical Metallurgy - Phase Diagram of the Copper-iron-silicon System from go to 100 PerCent Copper (Metals Technology, Sept. 1942)

    By A. G. H. Anderson, A. W. Kingsbury

    Silicon bronzes containing ken are used to a considerable extent in industry, under the trade name of P.M.G. alloys. Various classes of wrought alloys fall in the composition range 1.5 to 3.5 per cent

    Jan 1, 1943

  • AIME
    Papers - Physical Metallurgy - Phase Diagram of the Copper-iron-silicon System from go to 100 PerCent Copper (Metals Technology, Sept. 1942)

    By A. G. H. Anderson, A. W. Kingsbury

    Silicon bronzes containing ken are used to a considerable extent in industry, under the trade name of P.M.G. alloys. Various classes of wrought alloys fall in the composition range 1.5 to 3.5 per cent

    Jan 1, 1943

  • AIME
    List Of The Meetings Of The Institute And Their Localities From Its Organization To April 1, 1940

    [Trans. No. Place Date Vol. Page 1. Wilkes-Barre, Pa.*...May, '71.. 1 3 2. Bethlehem, Pa Aug., '71.. 1 10 3. Troy, N. Y Nov., '71, , 1 13 4. Phildelphia, Pa Feb., '72.. 1 17

    Jan 1, 1940

  • AIME
    Discussion - Differential Flotation Of Arsenical Quicksilver Ore - T.P. 1264, Mining Technology, Jan. 1941 – Rey, M., Brevers, H.

    By C. A. Heberlein

    C. A. HEBERLEIN, New York, N. Y.-The results stated by Rey and Brevers are so startling that they are of great interest, as the concentration of a low percentage of cinnabar by differential flotation

    Jan 1, 1941

  • AIME
    Electric Motors Versus Compressed-Air Engines For Driving Deep-Mine Hoists

    By K. A. Pauly

    (Wilkes-Barre Meeting, June, 1911.) COMPRESSED air has been and is still very extensively used in connection with mining-operations, but its application in the past has been almost entirely confined

    Dec 1, 1911

  • AIME
    21. The Upper Mississippi Valley Base-Metal District

    By Allen V. Heyl

    This old district is a major zinc and lead source and minor copper and barite source. Ores are chiefly in the Galena Dolomite and in limestones and dolomites of the Decorah and Platteville Formations,

    Jan 1, 1968

  • AIME