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  • AIME
    68. The Metaline District, Washington

    By Roy A. Anderson, Roger H. McConnel

    The Metaline district from 1906 through 1965 has produced nearly 16 million tons of ore yielding 400,808 tons of zinc and 178,062 tons of lead. The sediments, ranging from Precambrian into the Devonia

    Jan 1, 1968

  • AIME
    Personal (3a06b169-d9ed-4034-a9c6-b31a0a9bfa07)

    (Members are urged to send in for this column any notes of interest concerning themselves or their fellow-members) Members and guests who called at Institute headquarters during the period Feb. 10,

    Jan 4, 1917

  • AIME
    Technical Notes - On the Ordering Effects in the Corrosion of Cu3 Au by Aqueous Ferric Chloride

    By H. Papazian, Robert A. Lad

    SINCE it can be shown both theoretically'' : and experimentally that disordered Cu3Au has a greater internal energy than the ordered alloy, it might be expected that its chemical reactivity

    Jan 1, 1957

  • AIME
  • AIME
    Institute of Metals Division - The Effects of Some Alloying Elements on the Transformation of Fe-22.5 Pct Ni Alloys

    By R. B. G. Yeo

    The effects of alloy additions on the M, and A, temperatures of an Fe-22.5 pct Ni alloy have been determined. Increasing amounts of titanium, colum-bium, vanadium, and silicon raise and then lower M,w

    Jan 1, 1963

  • AIME
    Iron and Steel Division - Relation between Chromium and Carbon in Chromium Steel Refining - Discussion

    By D. C. Hilty

    C. E. SIMS*—This is a most interesting and important paper. It is important from two standpoints. First, it has as-spects of being highly accurate and therefore extremely useful to the operating man i

    Jan 1, 1950

  • AIME
    Technical Developments Leading Up to the Present Midvale Plant

    By Hugo L. Johnson, Robert Wallace

    THE Midvale plant of the United States Smelting Refining and Mining Company consists of a flotation mill for concentrating sulphide ores of lead and zinc by differential flotation to produce three sep

    Jan 1, 1948

  • AIME
    Washing Phosphoric Pig Iron for the Open-hearth and Puddling Processes at Krupp's Works, Essen

    By A. L. Holley

    THIS process is performed in the Pernot puddling furnace; it removes from 75 to 80 per cent. of the phosphorus, most of the sulphur, and practically all the silicon, from crude iron, in from five to e

    Jan 1, 1880

  • AIME
    Montreal Paper - Washing Phosphoric Pig Iron for the Open-hearth and Puddling Processes at Krupp's Works, Essen.

    By A. L. Holley

    This process is performed in the Pernot puddling furnace; it removes from 75 to 80 pel. cent. of the phosphorus, most of the sulphur, and practically all the silicon, from crude iron, in from five to

    Jan 1, 1880

  • AIME
    Degasification of Coal Seams at a Profit

    By Leo Ranney

    ANY years ago a prospector came to a Nevada town and built himself a shack. Day after day he searched the hills for gold -but he found none. He closed his shack and hurried north, where a strike had b

    Jan 1, 1943

  • AIME
    Selective Flotation of Feldspar - Quartz in a Non-Fluoride Medium

    By Subhas G. Malghan

    Feldspathic deposits occur widely throughout the United States, but North Carolina, California, Connecticut, and South Carolina accounted for over 80% of the total domestic feldspar output for the yea

    Jan 1, 1979

  • AIME
    Is Screening To Third Dimension Fully Developed?

    By OWEN H. PERRY

    One of man's primary tools is the ordinary screen. Whether of mesh or punched plate, it is fundamental in principle, primitive in its origin, and common in its application through all the world;

    Jan 1, 1949

  • AIME
    What's New in Mining Safety

    By J. J. Forbes

    Probably the newest thing in mining safety, or safety for mines, is the apparent dissatisfaction on the part of the mineral industries, as represented by both management and labor, and the general pub

    Jan 1, 1949

  • AIME
    The Girod Electric Furnace, and the French Works Using the Paul Girod Steel-Process

    By Wilhelm Borchers

    IN all special branches of the chemical and metallurgical industries, in which large electric furnaces became necessary for carrying out new processes or for the improvement of old ones, the developme

    Jan 1, 1910

  • AIME
    Asbestos

    By E. L. Mann

    Asbestos is the generic name given to a group of fibrous mineral silicates found in nature. They are all incombustible and can be separated by mechanical means into fibers of various lengths and cross

    Jan 1, 1983

  • AIME
    Personal (c7522665-6d51-4987-880d-4c044e822af6)

    The following is an incomplete list of members and guests who called at Institute headquarters during the period Oct. 10, 1919, to Nov. 10,1919. Carl A. Allen, Salt Lake City, Utah. W. G. Mitchell, M

    Jan 12, 1919

  • AIME
    Mineral Inventory Versus Production Planning Case Study - Sacaton Mine, Arizona

    By Marvin P. Barnes

    The Sacaton open pit copper mine has recently been placed into production. Some problems have been encountered in maintaining grade control due to differences between early block estimates and actual

    Jan 1, 1977

  • AIME
    In The Aggregate - The Party's Over: A Rambling Discourse On Suspended Contempt, The Bittersweet Boom, And Other Heresies

    By Lawrence F. Rooney

    One of Edgar Allan Poe's stories that haunts my subconscious is the Masque of the Red Death. These days, whenever I join a group like this, especially during the cocktail parties, I see myself an

    Jan 1, 1970

  • AIME
    Stock Piling - Past, Present, And Future

    By Richard J. Lund

    Stock piling-and by that I mean well-organized stock piling on a substantial scale-is almost as old as the hills themselves. It was back in early Biblical times, as recounted in the Book of Genesis, t

    Jan 1, 1949

  • AIME
    Institute of Metals Division - X-Ray Line Broadening of Hardened and Cold Worked Steel

    By W. P. Evans, R. W. Buenneke

    Warren and Averbach's multiple order, Fourier method was applied to solid specimens of SAE 1045 steel. The material was hardened to three hardness levels and specimens of each hardness were shot

    Jan 1, 1963