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  • AIME
    Eutectic Patterns In Metallic Alloys

    By C. H. Green

    . RECENTLY two papers on the structure of eutectics were read before the British Institute of Metals, one by F. L. Brady1 and the other by A. Portevin.2 In the preparation of photomicrographs of labor

    Jan 2, 1925

  • AIME
    Geophysical Prospecting ? A Wide Variety of Work Going On Throughout the World

    By Sherwin F. Kelly

    SINCE we used Chief Buehler's name last year to give our annual report a semblance of respectability, we can follow the good precedent thus established by telling of the work his Missouri State o

    Jan 1, 1937

  • AIME
    Technical Papers and Discussions - Copper and Copper-Rich Alloys - Structure of Copper-zinc Alloys Oxidized at Elevated Temperatures (Metals Technology, Sept. 1943)

    By B. J. Nelson, F. N. Rhinos

    Studies upon the rates of oxidation of copper alloys containing small quantities of the alloying elementsl,2 have shown that steady growth of the scales at predictable rates is limited to a small conc

    Jan 1, 1944

  • AIME
    Technical Papers and Discussions - Copper and Copper-Rich Alloys - Structure of Copper-zinc Alloys Oxidized at Elevated Temperatures (Metals Technology, Sept. 1943)

    By F. N. Rhinos, B. J. Nelson

    Studies upon the rates of oxidation of copper alloys containing small quantities of the alloying elementsl,2 have shown that steady growth of the scales at predictable rates is limited to a small conc

    Jan 1, 1944

  • AIME
    Progress Report on Grinding At Tennessee Copper

    By J. F. Myers

    AT the Regional meeting in Columbus, Ohio, in September 1949, the authors presented a progress report of the first year's operation with a Hardinge tricone mill in closed circuit with a Dorr hydr

    Jan 1, 1950

  • AIME
    Macintyre Development of National Lead Co.

    By AIME AIME

    ON the headwaters of the Hudson Riser, in a sparsely populated area of the north woods at Tahawus, N. Y., thirty miles from the nearest railroad, is the Maclntyre property of National Lead Co. Operati

    Jan 1, 1943

  • AIME
    Institute of Metals Division - Re-Examination of Ti-Fe and Ti-Fe-O Phase Relations (Discussion, p. 1417)

    By Elmars Ence, Harold Margolin

    The Ti-Fe and Ti-Fe-0 systems were re-examined because of the controversy regarding the existence of Ti2Fe, and to consider all available data points to the existence of Ti,Fe. The Ti-Fe-0 system cont

    Jan 1, 1957

  • AIME
    Crushing, Grinding, and Agitation of Tonopah Ores

    By H. A. BURK

    THE ores of the Tonopah, district are hard, compact and' highly siliceous. They contain from .1 to 2, per cent. of sulfide material, of which argentite is the valuable mineral; occasionally pyrar

    Jan 1, 1921

  • AIME
    Manganese-Steel Castings In The Mining Industry

    By Walter McKee

    WHEN mixed with common cast steel in quantities ranging from 11 to 13 ½ per cent. and properly treated, manganese increases the ductility of the metal and adds greatly to its toughness and resistance

    Jan 12, 1915

  • AIME
  • AIME
    Coal - Moss No. 3 Mine: The Materials Handling Aspects

    By F. M. Morris

    A large reserve of thick coal in southwest Virginia was developed by Clinch-field Coal Co. in 1957-1958 to produce a nominal rate of 1500 tph raw coal. Operation features coal cleaning in transit. Ref

    Jan 1, 1961

  • AIME
    Anaconda's Berkeley Pit A Four-Part Report On Open Pit Mining Operations - Berkeley Pit History And Geology

    By Charles C. Goddard

    Since discovery of silver-gold lode deposits in 1864, the Butte district has produced more than $2.25 billion worth of copper, zinc, manganese, silver, and gold, an unprecedented value in the mining w

    Jan 3, 1959

  • AIME
    Chicago Paper - Manganese-ore Deposits in Cuba

    By Ernest F. Burchard

    A Reconnaissance of the manganese- and chrome-ore deposits of Cuba was made by the writer, as a representative of the U. S. Geological Survey, in company with Mr. Albert Burch of the Bureau of Mines,

    Jan 1, 1920

  • AIME
    Adjustable Pneumatic Brattice for Controlling Ventilation

    By V. T. BERNER

    THIS apparatus was designed primarily to meet the demand for a quick, efficient stopping to seal off the burning area temporarily during a mine fire, but it can be used in any circumstance where an im

    Jan 1, 1930

  • AIME
    Metallurgy of Copper

    By Archer E., Wheeler

    Producing copper companies were active during 1941 owing to the national defense program the United States and the requirements of the friendly belligerent nation. This activity extended to the Americ

    Jan 1, 1942

  • AIME
    Carbocoal -Discussion (9162d9d3-f101-4a55-ad8d-07898ef2b6f6)

    . F. W. SPERR, JR.,* Pittsburgh, Pa.--Mr. Malcolmson states that the Carbocoal process produces ammonium sulfate in excess of that normally recovered in the ordinary byproduct coke process. Table 3 in

    Jan 11, 1918

  • AIME
    Papers - Descriptive - Titaniferous Magnetite Deposits of the Lake Sanford .Area, New York (Mining Tech., Jan. 1945, TP 1789)

    By Robert C. Stephenson

    Large deposits of titaniferous magnetite occur associated with anorthosite and gabbro in the Lake Sanford area, Essex County, New York. The ore, gabbro, and anortbosite show consanguineous relations.

    Jan 1, 1949

  • AIME
    Papers - Descriptive - Titaniferous Magnetite Deposits of the Lake Sanford .Area, New York (Mining Tech., Jan. 1945, TP 1789)

    By Robert C. Stephenson

    Large deposits of titaniferous magnetite occur associated with anorthosite and gabbro in the Lake Sanford area, Essex County, New York. The ore, gabbro, and anortbosite show consanguineous relations.

    Jan 1, 1949

  • AIME
    45. Non-Porphyry Ores of the Bingham District, Utah

    By R. D. Rubright, Owen J. Hart

    In the Bingham district over a span of more than 90 years, 43,947,104 tons of "non-porphyry" copper, lead, zinc, gold, and silver ore have been mined from a folded and faulted alternating series of Pe

    Jan 1, 1968

  • AIME
    The Metallurgical Factors Affecting The Production Of Seamless Pipe

    By J. W. Schroeder

    SEAMLESS pipe, the product produced from piercing a solid round billet of steel by the Mannesmann process, was first produced in the latter half of the 19th century, the Mannesmann machine having been

    Jan 1, 1951