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  • AIME
    Nonmetallic Minerals - Magnetic Beneficiation of Nonmetallics (With Discussion)

    By Samuel Gibson Frantz, G. W. Jarman

    The purpose of this paper is to relate briefly the development of magnetic separation and its extension from the separation of iron into its present use in the nonmetallic field, to suggest possible f

    Jan 1, 1932

  • AIME
    In Situ Analysis Of Coal Using A 252Cf - Ge(Li) Borehole Sonde (96c13692-9a95-45ac-a628-a85492cf46fd)

    By Christopher W. Schram, Allan B. Tanner, Frank E. Senftle, George R. Boynton, Philip W. Philbin

    A borehole sonde using a 252Cf neutron source and a Ge(Li) gamma-ray detector was field tested in a coal bed in Belmont County, Ohio, to ascertain whether such a device could be useful as a coal-explo

    Jan 1, 1979

  • AIME
    Leaching Tests at New Cornelia

    By H. W. Morse

    INTRODUCTION THE experimental work on the oxidized copper ore at the New Cornelia mine at Ajo, Ariz., ended on Jan. 12, 1916. On that date final decision was made on the general nature of the process

    Jan 9, 1916

  • AIME
    Nonmetallic Minerals - Quarry Waste in the Indiana Limestone District (With Discussion)

    By J. B. Newsom

    In the Indiana limestone district, some 50 or 60 per cent of the merchantable stone in a quarry opening is waste, and only about 40 or 50 per cent of the stone from the opening is finally sold. So lon

    Jan 1, 1932

  • AIME
    Geotechnical Analysis to Aid Recovery of North Main Shaft Pillar - Flin Flon Mine

    By D. S. G. Hanson

    The Flin Flon Mine has been in production for over fifty years, and current mining is dependent on pillar and remnant recovery. One of the last major blocks of ore, and an important economic entity to

    Jan 1, 1983

  • AIME
    The Need Of Uniform Methods Of Sampling Lake Superior Iron Ore (3b341452-f75a-4c33-a25d-77658cfb2066)

    By C. B. Murray

    "OUR experience from time immemorial has been that the furnace sampler and analyst usually find one or two, and sometimes more, points less iron than the Lake Superior shippers, but, fortunately, thei

    Jan 1, 1914

  • AIME
    Papers - X-ray Study of Effects of Adding Carbon, Nickel or Manganese to Some Ternary Iron-chromium-silicon Alloys (T. P. 852, with discussion)

    By Eric R. Jette, A. G. H. Anderson

    A few years ago, while the writers worked on the constitution of ternary and quaternary alloys consisting mainly of iron, chromium and siliconl,2 some information on microstructures and hardness, not

    Jan 1, 1938

  • AIME
    Application Of Electric Power To Mining Work In The Witwatersrand Area, South Africa

    By J. Norman Bulkley

    As electrical power is used to a greater extent on the Rand than in any other mining center, it is thought that a short description of the methods used and results obtained may be of interest. In comp

    Jan 2, 1916

  • AIME
  • AIME
    Galena Flotation Concentrator, Lake Gulch, Idaho (1e9afbd2-c653-479f-9329-b89a16ac179a)

    By W. L. Zeigler

    The mill is a departure from gravity concentration and has gained a reputation for the low initial cost of erection, extreme simplicity and the low cost of milling on the refractory character of the o

    Jan 1, 1927

  • AIME
  • AIME
    X-ray Metallography - Texture of Metals after Cold Deformation (With Discussion)

    By Franz Wever

    The importance of the Widmanstätten structure to structure theory in metallography has been recognized by many writers.l It is a structure produced by the precipitation of a, new phase from a solid

    Jan 1, 1931

  • AIME
    Historical Sketch Of Sudbury District.

    The discovery of nickel at the Wallace Mine in 1846, recorded in the Report of Progress of the Geological Survey of Canada, 1.848-49, was not the first find in the Sudbury mining district. As long ago

    Jan 1, 1907

  • AIME
    Part I – January 1968 - Papers - The Representation of the Textures of Rolled Copper, Brass, and Aluminum by BiaxiaI Pole Figures

    By R. O. Williams

    The concept of biaxial pole figures which completely represent sheel textures is defined and an iterative least-squares solution given. The method has been applied to rolled copper, aluminum, and bra

    Jan 1, 1969

  • AIME
    Development Practice in the Wisconsin Zinc District

    By Edwin Shorey

    IN THE southwestern Wisconsin zinc district, lying in Lafayette, Grant, and Iowa Counties, and the adjoining territory in northwestern Illinois, the orebodies are generally small, and are mined out in

    Jan 8, 1920

  • AIME
    Technical Papers and Notes - Institute of Metals Division - Zirconium and Hafnium Phases Isostructural with Ti2Ni

    By L. H. Schwartz, M. V. Nevitt

    THE phase Ti2Ni has been described by Laves and Wallbaum,1 who found the phase to be face-centered cubic with 96 atoms per cell, by Duwez and Taylor,2 who confirmed these observations and reported a l

    Jan 1, 1959

  • AIME
    Zinc - Adherence of Electrodeposited Zinc to Aluminum Cathode (Metals Technology. Oct. 1938)

    By H. R. Hanley, C. Y. Clayton

    One of the most important contributions to the art of electrolytic zinc production has been the aluminum cathode. This has been used in all major production since its commercial developmerit in 1916.

    Jan 1, 1944

  • AIME
    Papers - Grinding - Crushing and Grinding Practice, Tennessee Copper Company (Mining Technology, May 1940.) (with discussion)

    By J. F. Myers, F. M. Lewis

    The Tennessee Copper Company's operations are in the Ducktown Basin, in the extreme southeast corner of Tennessee. The ore is of the heavy sulphide type, the predominating sulphides being pyrite,

    Jan 1, 1943

  • AIME
    Equilibrium of Sulfur-Bearing Gases and Solids Relevant to the Burning of Limestone

    By L. S. Darken, H. A. Wriedt

    The equilibria at 1 atm total pressure and 600° to 1300°C (1112° to 2372°F) between gas mixtures with various partial pressures of the reactive constituents (principally sulfur dioxide, carbon dioxide

    Jan 1, 1974

  • AIME
    The Flotation Behavior of Digested Asphalt Ridge Tar Sands (8ee488b9-1910-40de-997a-19da4f1129fe)

    By J. D. Miller, R. J. Smith

    The hot water process for Utah tar sands differs significantly from that used for Canadian tar sands due to inherent differences in respective bitumen viscosities and the nature of bitumen-sand associ

    Jan 1, 1982