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  • AIME
    Conference on Production and Design Limitation and Possibilities for Powder Metallurgy (Metal Technology, January 1945) - The Sintering of Metal Powders-Copper (Metals Technology, October 1944)

    By J. F. Keefe, C. J. Bier, O&apos

    This study was carried out with copper because it represents the simplest form of sintering, in that but one metal is involved and all reactions occur in the solid state. The present work will cove

    Jan 1, 1945

  • AIME
    Cleveland Paper - Comparison of Results from Open-Topped and Closed-Topped Furnaces

    By Frank Firmstone

    In 1871, two furnaces at the Glendon Iron Works, which had been blown out on account of the "coal strike," were altered from the open-top plan with side flues for collecting the gas, to closed tops wi

  • AIME
    Titanium And Zirconium

    By Robert I. Jaffee, Walter L. Finlay

    IN the broad survey of the nonferrous' metallic elements contained in this book, the reader may well be impressed by the wide range of property combinations offered by the many metals and alloys

    Jan 1, 1953

  • AIME
    Mining Methods of Verde Mining District

    By Arthur Smith

    THE Verde mining district is in Yavapai County, in north-central Arizona. Jerome, the principal town, has a population of 6000 and the two important mines of the district-the United Verde and the Unit

    Jan 3, 1924

  • AIME
    Papers - Flotation - Submergence Factor in the Impeller Type of Flotation Machine (T. P. 2080, Min. Tech., Nov. 1946)

    By A. W. Fahrenwald

    Cell depth has been for many years a controversial question in a flotation-machine performance. In the impeller type of machine, we are really talking about impeller submergence—i.e., the depth in the

    Jan 1, 1947

  • AIME
    Papers - Flotation - Submergence Factor in the Impeller Type of Flotation Machine (T. P. 2080, Min. Tech., Nov. 1946)

    By A. W. Fahrenwald

    Cell depth has been for many years a controversial question in a flotation-machine performance. In the impeller type of machine, we are really talking about impeller submergence—i.e., the depth in the

    Jan 1, 1947

  • AIME
    Phase Diagram Of The Copper-Iron-Silicon System From 90 To 100 Per Cent Copper (6d356d63-77f4-4cf4-af0a-990cb1217169)

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

    SILICON bronzes containing iron 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 cen

    Jan 1, 1942

  • AIME
    Papers - - Research - Effect of Arsenates on the Viscosity of Drilling Muds (T. P. 1944, Petr. Tech., Nov. 1945)

    By C. M. Moncrief, B C. Craft

    A bentonite-clay drilling mud when treated with tetrasodium pyroarsenate underwent substantially the same reduction in viscosity and water loss as when treated with the complex phosphates. The complex

    Jan 1, 1946

  • AIME
    Papers - - Research - Effect of Arsenates on the Viscosity of Drilling Muds (T. P. 1944, Petr. Tech., Nov. 1945)

    By C. M. Moncrief

    A bentonite-clay drilling mud when treated with tetrasodium pyroarsenate underwent substantially the same reduction in viscosity and water loss as when treated with the complex phosphates. The complex

    Jan 1, 1946

  • AIME
    Grain Refinement Of Magnesium Alloys Without Superheating

    By Ralph Hultgren, David W. Mitchell

    MAGNESIUM alloys usually are superheated before casting in order to ensure fineness of grain. Superheat temperatures in common use range from 1600° to 1700°F while the casting temperature, which depen

    Jan 1, 1945

  • AIME
    Magnesium Alloys - Grain Refinement of Magnesium Alloys without Superheating (Metals Technology, June 1945)

    By Ralph Hultgren, David W. Mitchell

    Magnesium alloys usually are superheated before casting in order to ensure fineness of grain. Superheat temperatures in common use range from 1600" to r 7o0°F.; the casting temperature, which depends

    Jan 1, 1945

  • 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
    The Submergence Factor In The Impeller Type Of Flotation Machine

    By A. W. Fahrenwald

    CELL depth has been for many years a controversial question in a flotation-machine performance. In the impeller type of machine, we are really talking about impeller submergence-i.e., the depth in the

    Jan 1, 1946

  • 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
    Part XI - Papers - Superconductivity in Aged Zirconium-Niobium (Columbium) Alloys

    By R. F. Hehemann, S. T. Zegler

    The w phase in zirconium alloys containing more than G pct Nb can form in a difjUsionless manner during quenching or with composition change during aging at temperatures below 550°C. The latter treatm

    Jan 1, 1967

  • AIME
    Franco -American Engineering Committee

    In order to assist in the building up of the industries and commerce of France, by cooperating with the Congres General du Genie Civil, the four Founder Societies have appointed the following committe

    Jan 12, 1919

  • AIME
    Latest Improvements in the Cleveland-Cliffs Iron Company 's Grate-Kiln Operations to Give Improved Costs and Better Pellet Quality

    By Paul E. Rosten

    Introduction This papers describes some of the latest improvements that have been incorporated or planned by the Cleveland-Cliffs Iron Co. to reduce operating costs and improve pellet quality. The

    Jan 1, 1981

  • AIME
    Division Lectures - The 1962 Extractive Metallurgy Lecture - The World's Most Complex Metallurgy (Copper, Lead, and Zinc)

    By Albert J. Phillips

    The effect of impurities on the flowsheet in the smelting and refining circuits for copper, lead and zinc is reviewed and the interflow of by-poduct metals from copper, lead and zinc plants is pointed

    Jan 1, 1962

  • AIME
    The Behavior Of Copper-Matte And Copper-Nickel Matte In The Bessemer Converter.

    By David H. Browne

    (Pittsburg Meeting, March, 1910.) NICKEL has always been a fruitful mother of problems. Previous to the year 1906 nickel was regarded as an element replacing iron in copper-mattes, and it was belie

    Apr 1, 1910

  • AIME
    Institute of Metals Division - Evidence for Solidification of a Metastable Phase in Fe-Ni Alloys

    By R. E. Cech

    Particles -3 to 30 µ diam of a 29.5 pet Ni, 70.5 pet Fe alloy after being melted and solidified while falling through a hydrogen atmosphere were found to contain a distortion-free body-centered-cubic

    Jan 1, 1957