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  • AIME
    Mechanism Of Precipitation In Alloys Of Beryllium In Copper

    By R. F. Mehl, C. S. Barrett, A. G. Guy

    INTRODUCTION IN the last few years this laboratory has published a series of papers on the mecha¬nism of age -hardening.14,1,6,11,20 Briefly stated it has been proposed that hardening is caused by

    Jan 1, 1948

  • AIME
  • AIME
    Conference on Production and Design Limitation and Possibilities for Powder Metallurgy (Metal Technology, January 1945) - Design Factors for the Metal Forms with Which Powder Metallurgy May Compete

    By Fred P. Peters

    At first glance this paper may seem unique among those comprising this symposium on designing for powder metallurgy, since it is evidently concerned with everything but Powder metallurgy. This paradox

    Jan 1, 1945

  • AIME
    Machining Aluminum (07400c3b-9284-453e-a420-8a1a85fce38c)

    By R. L. Templin

    THE increasing use of aluminum and its alloys in commercial fields has demanded a better understanding of their machining properties. This fact is exemplified by problems that have arisen in the autom

    Jan 1, 1927

  • AIME
    Coal-Mine Explosions Caused by Gas or Dust

    By H. N. Eavenson

    In a discussion in the Transactions of the Institute (vol. Xl, page 835 et seq.) the writer gave some data about the explosions of gas and dust in the coal mines of the United States, Canada, and Mexi

    Jan 1, 1915

  • AIME
    Structure of Iron after Compression (925770fb-1d87-474c-9bc1-df08e83614b3)

    By Charles Barrett

    THE experiments reported in this paper have been fruitful in disclosing the mechanism of the deformation of iron in compression. They have established the nature of "deformation bands," "etch bands,"

    Jan 1, 1938

  • AIME
    Cleveland Paper - Fuel-Efficiency of the Cupola-Furnace

    By John Jermain Porter

    The chief purpose of this paper is to indicate the laws governing the fuel-economy of the cupola, to examine the feasibility of some of the proposals for increasing its fuel-economy, and to show that

    Jan 1, 1913

  • AIME
    Institute of Metals Division - Preferred Orientation in Warm- Worked and Heat-Treated 4340 Steel

    By S. L. Lopata, E. B. Kula

    A variation of yield and tensile strength with direction has been noted in heat-treated 4340 steel which had been warn-worked by rolling in the austenitic condition prior to quenching. Measurements by

    Jan 1, 1960

  • AIME
    Institute of Metals Division - The Alloy Systems Uranium-Aluminum and Uranium-Iron

    By A. R. Kaufman, P. Gordon

    THE large-scale manufacture and use of uranium in conjunction with the atomic energy development during the war led to a need for knowing the equilibrium diagrams of uranium with various other metals.

    Jan 1, 1951

  • AIME
    Slag Control In The Making Of Iron And Steel

    AT the fall meeting of the Iron and Steel Division, Oct. 4, 1934, in New York, a symposium was held on Slag Control in the Making of Iron and Steel. The chairman was J. H. Nead and the vice chairman,

    Jan 1, 1935

  • AIME
    The Chinese On The Rand.

    By T. Lane Carter

    BEFORE describing the experience with the Chinese on the Rand and the work they have accomplished, it will be necessary, sary, first, to give a brief account of labor-conditions in the Transvaal since

    Sep 1, 1908

  • AIME
    Chicago Paper - Electrolytic Zinc (with Discussion)

    By C. A. Hansen

    The furnace used for experimental work is shown in Fig. 1. One fireclay sagger, or pot, was set within another and the space between the two filled with Silox heat insulation. The hearth is a cast-iro

    Jan 1, 1921

  • AIME
    Lake Superior Paper - Surface Changes of Carbon Steels Heated in Vacuo (with Discussion)

    By George R. Ensminger, E. Heaton Hemingway

    During the past year, the Watertown Arsenal has been interested in the occluded gas and oxide content of certain ordnance steels in order to determine, if possible, whether some of the peculiar failur

    Jan 1, 1922

  • AIME
    Lake Superior Paper - Surface Changes of Carbon Steels Heated in Vacuo (with Discussion)

    By E. Heaton Hemingway, George R. Ensminger

    During the past year, the Watertown Arsenal has been interested in the occluded gas and oxide content of certain ordnance steels in order to determine, if possible, whether some of the peculiar failur

    Jan 1, 1922

  • AIME
    Institute of Metals Division - The High-Temperature Allotropy of Some Heavy Rare-Earth Metals

    By A. H. Duane, A. E. Miller

    The high-temperature allotropy of some heavy rare-earth metals and their alloying behavior with magnesium in the 0 to 50 at. pct Mg region was studied by thermal, microscopic, and X-ray methods. Exami

    Jan 1, 1964

  • AIME
    Round Table: Carbon In Pig Iron

    CONTENTS PAGE Need for Research in Foundry Pig Iron. By Richard Moldenke. (With Discussion) 1 Carbon Characteristics of Copper-bearing Pig Iron. By W. B. Coleman. (With Discussion) 12 A Pig Iro

    Jan 1, 1927

  • AIME
    The Ever New West

    By George Otis Smith

    WHAT American can enter this Western empire without his imagination being stirred by the stories of its past-yes, and even more by visions of its future! Whether we travel by rail or by auto, our path

    Jan 1, 1926

  • AIME
    Geographical List Of Members (c0760ab9-a513-4b70-b147-8bb81f921a4b)

    [United States Page 837 Europe Page 881 Canada Page 876 Africa Page 883 Mexico Page 878 Middle East Page 884 West Indies Page 879 Asia Page 88

    Jan 1, 1961

  • AIME
    Part II – February 1969 - Communication - The Viscosities of Cadmium and Indium

    By H. R. Thresh, A. F. Crawley

    THIS paper reports the results of viscosity measurements on cadmium and indium undertaken as part of a continuing program of liquid metals research at the Mines Branch, Department of Energy, Mines and

    Jan 1, 1970

  • AIME
    Part VI – June 1968 - Papers - Internal Oxidation of Iron-Manganese Alloys

    By J. H. Swisher

    When an Fe-Mn alloy is internally oxidized, the inclusions formed are MnO which contains some dissolzled FeO. In the internal oxidation reaction, not all of the manganese is oxidized; some remains in

    Jan 1, 1969