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  • AIME
    News From Members At The Front (bdc04a99-7132-4d5b-b93c-bb8fdd162bab)

    K. Baumgarten has returned from active service in France. He reports that he saw C. W. Campbell, formerly with the 2d Engineers on the Chateau Thierry front, and believes that the latter returned to t

    Jan 10, 1918

  • AIME
    Institute of Metals Division - Strain Rate Effects in Tungsten

    By James H. Bechtold

    The yield strength of annealed tungsten was found to have a strain rate exponent 12 times as great as that of low carbon steel. The effects of temperature and strain rate could be correlated through t

    Jan 1, 1957

  • AIME
    Papers - Non- metallic Minerals - Clay Mining for Quality (With Discussion)

    By H. E. Nold

    THIS paper is an effort to explain in a simple manner the fundamental principles involved in examining a clay deposit for both quantity and quality and in operating a clay mine, either open-pit or und

    Jan 1, 1929

  • AIME
    The Application of Large Gas-Engines in the German Iron and Steel Industries

    By K. Reinhardt

    THE idea of burning blast-furnace gases directly in gas-engines, instead of under steam-boilers, as had previously been done, was first put into practice barely ten years ago, almost simultaneously in

    Nov 1, 1906

  • AIME
    Characteristics And Origin Of The Brown Iron-Ores Of Camaguey And Moa, Cuba.

    By Willard L. Cumings, Benjamin L. Miller

    (Glen Summit Meeting, June, 1911.) I. THE CAMAGUEY DEPOSITS. 1. Location. THE Camaguey brown iron-ore deposit covers the top of San Felipe hill, the nearest point of which lies 14 miles NW. of th

    Mar 1, 1911

  • AIME
    Part V – May 1969 - Papers - Dissolution of UC Particles in Uranium During Postirradiation Annealing

    By G. L. Kulcinski, R. D. Leggett

    Irradiated uranium containing 635 ppm of carbon, mostly in the form of UC precipitates, was annealed at temperatures from 650" to 900°C under hydrostatic pressures of 0 to 1000 bars. Postirradiation e

    Jan 1, 1970

  • AIME
    Reservoir Engineering – Laboratory Research - Oxidation of Crude Oil in Porous Media

    By H. J. Ramey, I. S. Bousaid

    Experimental results on the oxidation reaction kinetics in the forward combustion oil recovery process are presented. A total of 48 runs were made wherein a stationary thin layer of coked, unconsoli-d

    Jan 1, 1969

  • AIME
    Iron and Steel Division - Effect of Silica Reduction on the Desulphurizing Power of Blast-Furnace Type slag

    By Nicholas J. Grant, Olaf Troili, John Chipman

    IN recent studies of the factors which affect the rate of desulphurization and its equilibrium, it became apparent that certain concurrent reactions were operative which had a significant effect on de

    Jan 1, 1952

  • AIME
    Volcanic Waters.

    By John B. Hastings

    THE origin of the watery vapors of vulcanism has always been an object of interest and speculation to the seismologist, and as theories of the genetic origin of ore-deposits have of late years been pr

    Jan 5, 1908

  • AIME
    Arizona Paper - Power Plant of the Burro Mountain Copper Co. (with Discussion)

    By Charles Legrand

    The power plant of the Burro Mountain Copper Co. is located near Tyrone, N. M., at 5,950 ft, elevation. It is interesting because it uses the largest stationary Diesel engines in the United States.

    Jan 1, 1917

  • AIME
    Curves For The Sensible-Heat Capacity Of Furnace Gases (ad1c8955-ee2f-4596-bdd4-6fe2fc84b7bf)

    By C. R. Kuzell

    The Editor desires to call attention to the charts in the paper of the above title which were published in the August Bulletin on pages 2190 and 2191. It was impracticable to include in the Bulletin.

    Jan 9, 1914

  • AIME
    Geology of the Cobalt District, Ontario, Canada.

    By Reginald E. Hore

    I. INTRODUCTION. SINCE the discovery of silver at Cobalt, Ontario, in 1903 more than 100,000,000 oz. of silver have been produced b: the mines in the Nipissing district, and there is reason to believ

    May 1, 1911

  • AIME
    Mining the Eastern Tennessee Ore Bodies

    The Mascot-Jefferson City zinc mining district in eastern Tennessee has been a major zinc producer for over 60 years. The district lies within the Tennessee division of the Appalachian Valley and is u

    Jan 5, 1976

  • AIME
    Technical Notes - Modifications of the Schulz Technique for the X-Ray Determination of Preferred Orientation in Rolled Metal

    By G. Vaux, M. L. Fuller

    AN apparatus and procedure for the determination by X-ray reflection of preferred orientation of crystals in rolled metal with the Geiger counter X-ray spectrometer was described by Schulz.' This

    Jan 1, 1954

  • AIME
    Institute of Metals Division - The Oxidation of Hastelloy Alloy X

    By S. T. Wlodek

    The surface and subscale oxidation reactions were followed by means of continuous weight-gain and metallographic techniques over the range 1600" to 2200°F (871° to 1204 °C) for up to 400 hr. Full iden

    Jan 1, 1964

  • AIME
    Technical Notes - Some Useful Tables for Approximating Smooth Curves by Fifth-and-Lower Degree Polynomials

    By H. H. Rachford, W. P. Schultz

    The use of computing machines to solve physical problems has made it imperative to represent physical data in a form computing machines can use. Although curve-fitting is an old and well-practiced art

    Jan 1, 1956

  • AIME
    Mining Is Fun At New Park

    By John V. Beall

    When a mine has ore averaging 5% lead, 7% zinc, 0.60% copper, 1/4 oz gold, and 6 oz of silver, adequate reserves, power and water, easy access to market, and is situated in beautiful natural surroundi

    Jan 1, 1949

  • AIME
    Separation of Hematite by Hysteretic Repulsion (2f52ebef-f2d1-481c-a057-262d316fbf8e)

    By E. W. Schilling

    THE separation of hematite by hysteretic repulsion was first brought to the attention of the public in 1922, by W. M. Mordey1. Three years later another paper2 was published and after another four yea

    Jan 1, 1935

  • AIME
    Separation of Hematite by Hysteretic Repulsion (70aeee02-5a4b-4b00-bcef-c184400ae993)

    By E. W. Schilling

    THE-separation of hematite by hysteretic repulsion was first brought to the attention of the public in 1922, by W. M. Mordey1. Three-years later another paper2 was published and after another four yea

    Jan 1, 1936

  • AIME
    Separation Of Hematite By Hysteretic Repulsion

    By Harwick Johnson, E. W. Schilling

    THE separation of hematite by hysteretic repulsion was first brought to the attention of the public in 1922, by W. M. Mordey1. Three years later another paper2 was published and after another four yea

    Jan 1, 1935