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  • AIME
    New York Paper - Pyritic Smelting and Basic Converting at the Kosaka Copper Smelter, Japan (with Discussion)

    By Kenzo Ikeda

    The Kosaka smelter is situated in the extreme northern end of Hondo (the main island of Japan) 15 mi. east of Odate, on the government railroad, to which it is connected by a private railway. It conta

    Jan 1, 1923

  • AIME
    The Cerro de Pasco Railway Company ? Utilitarian and Scenic

    By R. E. Grant

    THE Cerro de Pasco Railway Co., owned and operated by the Corporation, is a common carrier whose chief functions are transportation of ore and concentrates from the mines at Cerro de Pasco to the smel

    Jan 1, 1945

  • AIME
    Natural Gas Technology - Gas Storage in the Playa Del Rey Oil Field

    By John Riegle

    To date. utility company underground storage of gas has generally been restricted to depleted dry gas fields. The Playa del Rey project is probably the first to successfully store gas in a partially d

    Jan 1, 1953

  • AIME
    Papers - Smelting - Converting Practice - Messina Stationary Basic Copper Converter (With Discussion)

    By R. G. Knickerbocker

    The copper smelter and refinery of The Messina (Transvaal) Development Co. Ltd., at Messina, South Africa, was erected in 1920 and 1921, but initial operations were deferred until late in 1922 on acco

    Jan 1, 1934

  • AIME
    Iron Ore Reserves in Michigan

    By Franklin G. Pardee

    WARTIME depletion of the reserves of iron ore in the Lake Superior region of the grade and character now being shipped down the Lakes was serious. The time has come to take stock of the resources that

    Jan 1, 1948

  • AIME
    Discussion - Differential Flotation Of Arsenical Quicksilver Ore - T.P. 1264, Mining Technology, Jan. 1941 – Rey, M., Brevers, H.

    By C. A. Heberlein

    C. A. HEBERLEIN, New York, N. Y.-The results stated by Rey and Brevers are so startling that they are of great interest, as the concentration of a low percentage of cinnabar by differential flotation

    Jan 1, 1941

  • AIME
    Technical Papers and Notes - Institute of Metals Division - Effects of Composition on Transformations in Titanium-Chromium Alloys

    By W. B. Triplett, H. I. Aaronson, G. M. Andes

    THE morphology and mechanism of the proeutectoid a and the eutectoid reactions have been recently investigated in some detail in an iodide-base Ti—7.22 pct Cr alloy.' These studies have now been

    Jan 1, 1959

  • AIME
    Symposium on Practical Aspects of Diffusion - Diffusion of Alclad 24S-T Sheet (Metals Technology, Jan. 1944) (With discussion)

    By R. H. Brown, F. Keller

    Because of the extensive use of Alclad 24s alloy sheet in aircraft construction, there is much interest in the metallurgical changes caused by heat-treatment of this product.1, 2 One of these changes

    Jan 1, 1944

  • AIME
    Symposium on Practical Aspects of Diffusion - Diffusion of Alclad 24S-T Sheet (Metals Technology, Jan. 1944) (With discussion)

    By F. Keller, R. H. Brown

    Because of the extensive use of Alclad 24s alloy sheet in aircraft construction, there is much interest in the metallurgical changes caused by heat-treatment of this product.1, 2 One of these changes

    Jan 1, 1944

  • AIME
    A Hot-Wire Anemometer With Thermocouple

    By T. S. Taylor

    THE development of the linear hot-wire anemometer has been chiefly clue to the efforts of L. V. Kings1 and A. E. Kennelly and H. S. Sanborn.2 The anemometers used by these investigators consisted esse

    Jan 9, 1919

  • AIME
    Technical Notes - Pressure Distribution in Unsaturated Oil Reservoirs

    By E. R. Brownscombe, Francis Collins

    The pressure distribution in a reservoir producing an incompressible fluid by radial flow in a horizontal structure is a simple logarithmic function' used daily by reservoir engineers. The assump

    Jan 1, 1950

  • AIME
    Institute of Metals Division - Solidification Mechanism of Steel Ingots

    By H. F. Bishop, F. A. Brandt, W. S. Pellini

    The solidification mechanism of experimental steel ingots (7x7x20 in.) was studied by thermal analysis. It was determined that solidification proceeds in wave-like fashion at rates which are determine

    Jan 1, 1953

  • AIME
    Brief Description of the Bethlehem Steel Co.'s Plant

    By AIME AIME

    IT IS impossible in this short sketch to give a detailed description of each part of the plant at Bethlehem, therefore, only such facts will be touched on as are necessary to give a general idea of th

    Jan 1, 1924

  • AIME
    Papers - Gold and Silver Milling and Cyaniding - Milling Methods at the Concentrator of The Fresnillo Company

    By W. A. Binsacca

    The concentrator treats sulfide ore containing lead, copper, zinc, gold and silver, at the rate of 850 tons per 24 hr., and produces lead, copper, zinc and iron concentrates by selective flotation met

    Jan 1, 1935

  • AIME
    Mining - Mechanical Mining

    By Eugene McAuliffe

    The term "mechanical mining" carries an ambiguity which justifies a preliminary word of explanation. . All mining activity conducted in this day is more or less mechanical; that is to say, power expre

    Jan 1, 1931

  • AIME
    Friction Rock Stabilizers-A Different Approach to Ground Support

    By James J. Scott

    A four-year program of research, development, and field testing has led to the refinement of a ground support system utilizing friction rock stabilizers, or "Split Sets," as they are known by their pa

    Jan 7, 1977

  • AIME
    Local Section Committees (82feb5b0-1218-457b-ad2f-1b9cee27c8db)

    Upper Peninsula W. O. HOTCHKISS, Chairman C. H. BAXTER, Secretary-Treasurer, Michigan College of Mining and Technology, Houghton, Mich. S. R. ELLIOTT RUDOLPH ERICSON W. H. SCHACHT Utah Meets s

    Jan 1, 1932

  • AIME
  • AIME
    Statement of Receipts and Disbursements

    Receipts, Jan. 1, 1914, to Dec. 31, 1914 Cash on hand, Jan, 1 1914 General Funds $1,843.54 Special Funds 1,039.00 $2,882.54 Initiation Fees $8,500.00 Annual Dues 44,060.84 Life Memberships 1,95

    Jan 1, 1917

  • AIME
    Iron and Steel Division - Approximate Calculation of the Change in Solubility of Nitrogen in Molten Iron Alloys as a Function of Temperature

    By E. C. Nelson

    An equation is derived for calculating approximately the solubility of nitrogen in an alloy steel over a temperature range from 1200" to 1900°C using data on the effects of alloys on the activity coef

    Jan 1, 1963