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  • AIME
    Papers - Physical Metallurgy - Constitution of Lead-rich Lead-antimony Alloys (Metals Technology, Sept. 1942.) (with discussion)

    By W. S. Pellini, F. N. Rhines

    In many of the otherwise well established alloy phase diagrams the solidus curves (temperatures at which liquid first appears upon melting) have not been located accurately, chiefly because the experi

    Jan 1, 1943

  • AIME
    Cement - An Industry In Flux

    By George H. K. Schenck, Peter G. Donald

    There is an accelerating acceptance of change by management of cement companies. Diversity of response is noticeable in efforts across the country to reverse the downward trend in profits that brought

    Jan 4, 1967

  • AIME
    Atlanta, Ga Paper - The Gold-Regions of Georgia and Alabama

    By William M. Brewer

    History.—The history of gold-mining in Georgia and Alabama antedates the discovery of gold in California. A very large proportion of the gold used in the United States previous to 1849 was produced by

    Jan 1, 1896

  • AIME
    Standards For Identifying Complex Twin Relationships In Cubic Crystals

    By C. G. Dunn

    IDENTIFICATION Of the kinds of orientation relationships that may exist among crystals is an important problem in the metallurgical field. As an aid to its solution standard orientations of several or

    Jan 1, 1945

  • AIME
    Reservoir Engineering – General - Prediction of the Density of Two-Phase Hydrocarbon Systems Particularly Near the Critical Region

    By A. M. Sarem, J. M. Campbell

    Molecular refraction is introduced as a new and improved third parameter for prediction of the PVT behavior of hydrocarbon systems. This parameter, characterizing the complex as well as the pure hydro

    Jan 1, 1966

  • AIME
    Institute of Metals Division - Hydrogen Embrittlement of Steels (Discussion page 1327a)

    By W. M. Baldwin, J. T. Brown

    The effect of hydrogen on the ductility, c, of SAE 1020 steel at strain rates, i, from 0.05 in. per in. per rnin to 19,000 in. per in. per rnin and at temperature, T, from +150° to —320°F was determin

    Jan 1, 1955

  • AIME
    Newell G. Alford, Chairman, Coal Division, A.I.M.E.

    By AIME AIME

    WHEN the present Chairman of the Coal Division, A.I.M.E. applied for membership in the Institute 28 years ago one of his endorsers was Howard N. Eavenson, with whom he has now been associated as a par

    Jan 1, 1942

  • AIME
    Engineering Problems in Atomic Energy for Industrial Application

    By J. A. Hutcheson

    NO one questions that it is technically possible to achieve the controlled release of atomic energy in a form that can be converted into heat or electricity. However, before this is actually an accomp

    Jan 1, 1948

  • AIME
    Note On The Utilization Of The Waste Heat Of Regenerative Furnaces.

    By George Stone

    THE stack gases from regenerative furnaces are very seldom utilized for the production of steam. If the temperature of the gases is not higher than 300° C. (572° F.) there is no economy in their use f

    Jan 10, 1913

  • AIME
    Institute of Metals Division - Estimation of the Entropy of NaCl-Type Compounds

    By Larry Kaufman

    A useful method for estimating the entropy of NaCl type compounds has been developed by combining the Debye theory of specific heat with the Lindemann formula. This method pemnits calculation of the e

    Jan 1, 1962

  • AIME
    Iron and Steel Division - Activity of Carbon in Liquid-Iron Alloys

    By J. Chipman, T. Fuwa

    The effects of various elements on the activity coefficient of carbon in liquid iron have been studied by two experimental methods: 1) equilibration with controlled mixtures of CO and CO2; 2) the solu

    Jan 1, 1960

  • AIME
    The Combustion Of Coal.

    By Joseph A. Holmes

    (Pittsburg Meeting, March, 1910.) AT the Mining Experiment Station of the U. S. Geological Survey, in Pittsburg, an investigation of the process of combustion is being carried on in a specially-desig

    May 1, 1910

  • AIME
  • AIME
    Coal - Experiments with an Underground Auger

    By J. P. Newell, R. W Storey

    This paper describes the development of a continuous float-and-sink process to produce coal low enough in ash content to be suitable for production of electrodes. The cleaned coal had a combined iron

    Jan 1, 1953

  • AIME
    Coal - Experiments with an Underground Auger

    By J. P. Newell, R. W. Storey

    This paper describes the development of a continuous float-and-sink process to produce coal low enough in ash content to be suitable for production of electrodes. The cleaned coal had a combined iron

    Jan 1, 1953

  • AIME
    Kerr-McGee's Ambrosia Complex: From Mined Rock To Yellowcake

    With a mine output as high as 5000 tpd and mill capacity of 7000 tpd, the uranium mining and milling complex owned and operated by Kerr-McGee Nuclear Corp. in the Ambrosia Lake area is the largest in

    Jan 8, 1974

  • AIME
    Technical Notes - New Intermediate Phase in Burnt Tungsten Steels

    By Kehsin Kuo

    DIE steel with 1.47 pct C, 0.42 pct Mn, and 8.22 pct W contains Fe,C and WC in the annealed state and WC embedded in a martensitic matrix in the hardened state (quenched from 800°C). The presence of a

    Jan 1, 1957

  • AIME
    Water-Flushing Of Coal During Crushing

    By Suresh P. Babu, Joseph W. Leonard

    The ultimate objectives of comminution should be to reduce material to some specified size while producing a minimum of undersize or fines, with less power, higher throughputs, and with more compact m

    Jan 1, 1978

  • AIME
    Solar Astronomy at Climax - Studies of Synthetic Eclipses of the Sun Used to Foretell Atmospheric Conditions on Earth

    By Walter O. Roberts

    A TOTAL eclipse of the sun is a brief, exciting spectacle witnessed by most men but once or twice during a lifetime. But to an astronomer an eclipse of the sun is an event of utmost scientific importa

    Jan 1, 1946

  • AIME
    Domestic Production - Montana's Oil Industry for 1927

    By Ralph Arnold

    Since 1915, when Elk Basin field was brought in, eight oil fields have been developed in Montana and the production has arisen from 50,000 bbl. in 1916 to 8,000,000 bbl. in 1926. The production for 19

    Jan 1, 1928