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  • AIME
    A Retrospect of the Comstock and the Salvaging of Relics

    By JOHN A. FULTON

    THE Comstock Lode is in Storey County, Nevada, and extends in a north and south direction through the towns of Virginia City and Gold Hill, with a total length of 4.27 miles. Its mines have produced s

    Jan 1, 1929

  • AIME
    Annual Meeting, New York

    THE opening session was held on Tuesday evening, February 17th, in the house of the American Society of Civil Engineers. The President of the Institute, Mr. E. B. Coxe, after a few introductory rem

    Jan 1, 1880

  • AIME
    Part IX – September 1969 – Communications - Heterogeneous Precipitation of Gamma Prime Platelets on Dislocation Networks in AI-0.5 At. pct Ag

    By C. T. Young, J. L. Lytton

    In recent investigations,1,2 the strength and thermal stability of dislocation substructures prepared by 5 to 25 pct room temperature tensile straining and recovery annealing at 120°, 160°, and 200°C

    Jan 1, 1970

  • AIME
    New York Paper February, 1918 - Notes on Theory and Practice of Ball-milling, Particularly Peripheral Discharge Mills

    By Pierre R. Hines

    These notes are based on observations made while on a recent trip through the West, for the purpose of studying the practical operation of the ball-mill. The writer takes this opportunity to express h

    Jan 1, 1918

  • AIME
    The Coal Production of the United States in 1874.*

    By R. P. Rothwell

    IN January last I published in the Engineering and Mining Journal a table giving, with a considerable degree of accuracy, the production of anthracite coal for the year 1874. At that time it was impos

    Jan 1, 1875

  • AIME
    A Chemical Method of Determining Tonnages in Mill Circuits

    By A. J. Weinig

    NEED for some simple method of determining tonnages in mill circuits has always been felt by operators and consultants alike. To meet this demand the following method was evolved and has been found ac

    Jan 1, 1933

  • AIME
    Part III - Papers - Rapid Vapor Phase Growth of High-Resistivity GaP for Electro-Optic Modulators

    By J. J. Tietjen, D. Richman

    Single-crystal Gap lms been epitaxially grow from the vapor phase at a rate oJ 3 p per nzin without encountering a7Zy low-ang-le grain boundaries or debwading- the electrical properties of the materia

    Jan 1, 1968

  • AIME
    Part IX - Communications - Some Observations on the Structure of the Equiaxed Zone in Aluminum-Copper Alloys

    By B. Chalmers, S. Wojciechowski

    THE structure of the equiaxed zone of several A1-Cu samples mechanically stirred during unidirectional solidification was examined. The stirring was produced by rotary oscillation of the mold about it

    Jan 1, 1968

  • AIME
    On the Origin of Certain Systems of Ore-bearing Fractures

    By W. H. Emmons

    IN 1922 Morey made a series of experiments in which he observed the cooling of a molten system containing H20, 9.1 per cent; K20, 17.3 per cent and Si02, 73.6 per cent. This system was confined in a b

    Jan 1, 1934

  • AIME
    A. I. M. E. Technical Publications, 1929

    [Separates of all the Technical Publications published in 1.929 ,are available at Institute headquarters. All the papers are on file in public, university and technical libraries, and when so indicate

    Jan 1, 1929

  • AIME
    Effect Of Grain Size And Bar Diameter On Creep Rate Of Copper At 200°C.

    By C. F. Riisness, E. R. Parker

    THAT grain size has a great effect on the mechanical properties of metals has been recognized for a long time. Bassett and Davis1 in 1919 did excellent work in [ ] determining the effect of grain si

    Jan 1, 1944

  • AIME
    Technical Notes - Effect of Strain and Temperature on the Yielding of Copper and Nickel

    By J. H. Frye, J. L. Scott, J. W. Woods

    THERE are at least two effects of temperature on the stress required to produce plastic flow. 1) Metals plastically strained for the same amount at different temperatures possess different stress-stra

    Jan 1, 1958

  • AIME
    Mesabi Enters A New Era

    By Paul C. Merritt

    The story now unfolding on the Mesabi Range is more than just another chapter in the continuing history of iron mining. It is an epic of foresight, research and pioneering instinct just now culminatin

    Jan 10, 1965

  • AIME
    Explanation Of Coding (9569803f-8ad2-4f96-8bb5-6024464972bf)

    [Alphabetic Section (Page 1): The letter immediately following the member's name indicates grade: M-Member, A-Associate, J-Junior. The numerals following member's grade indicate year o

    Jan 1, 1961

  • AIME
    Explanation Of Coding (c60f4f35-e866-459d-809e-9100ab6f0ab6)

    [Alphabetic Section (Page 689): The letter immediately following the member's name indicates grade: M-Member, A-Associate, J-Junior. The numerals following member's grade indicate year

    Jan 1, 1961

  • AIME
    Explanation Of Coding (4979064b-c43c-46d1-a2ae-8cce14a9b2b4)

    [Alphabetic Section (Page 729): The letter following the member's name indicates grade: M-Member, A-Associate, J-Junior. The numerals following member's grade indicate year of electio

    Jan 1, 1961

  • AIME
    Organization of Scientific Research in Industry: Finding and Encouraging Competent Men

    By F. B. JEWETT

    TWENTY FIVE years of doing, finding, and encouraging others to do scientific research in' industry, and of organizing the machinery for the` smooth 'and effective conduct of such research, h

    Jan 1, 1929

  • AIME
    Board Of Directors

    Meeting of June 26, 1914.-The President was authorized to appoint Advisory Committees to co operate with the United States Bureau of Mines. The President announced the appointment of Edward H. Benjam

    Jan 8, 1914

  • AIME
    Automatic Pulp Density Controller Perfected

    By AIME AIME

    A PAPER prepared by James A. Adams, development engineer of the fitline & Smelter Supply Co., and presented at the last Annual Meeting of the A.I.M.E. in New York City, de- scribed a new automatic pul

    Jan 1, 1940

  • AIME
    A Metallurgical Diversion

    By AIME AIME

    M ODERN metallurgy properly belongs to this century. The great advance made in this science is directly attributable to the discovery of the Roentgen rays. Application of the results of this discovery

    Jan 1, 1940