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  • AIME
    Coal Mining Methods, with Especial Reference to Improved Methods and Higher Extraction - Alabama Coal-mining Practice (with Discussion)

    By Milton H. Fies

    Although pig iron from iron ore and red cedar charcoal preceded the mining of coal by many years, for tradition says that Alabama iron was used to shoe the horses of Andrew Jackson's soldiers, co

    Jan 1, 1925

  • AIME
    Identification Of Cao-Mgo Orthosilicate Crystals, Including Merwinite (3Cao-Mgo-2Sio2), Through The Use Of Etched Polished Sections

    By R. B. Snow

    THIS paper describes a technique of polishing and etching specimens of open-hearth furnace slags or hearth aggregates for identification of the crystalline constituents-lime (CaO), tricalcium silicate

    Jan 1, 1947

  • AIME
    Part X - The 1967 Howe Memorial Lecture – Iron and Steel Division - Kinetics of Chlorination of Metal Sulfides

    By F. E. Pawlek, J. K. Gerlach

    The chloridizing roasting of ores is applied when metal sulfides and oxides are to be converted into soluble or volatile compounds. The chlorine required is either obtained from the admixed chlorides

    Jan 1, 1968

  • AIME
    Shrinkage Stopes

    A shrinkage stope is an overhand stope in which the broken ore accumulates until the stope is completed to, or near, the level above. As broken ore generally occupies at least 60 per cent. more space

    Jan 1, 1925

  • AIME
    New York Paper - Role of Secondary Enrichment in Genesis of the Butte Chalcocite (with Discussion)

    By Augustus Locke

    In 1900, when. the public first heard of "secondary enrichment," the Butte chalcocite seemed clearly supergene. Mining, through successive regions of leached capping, bonanza sulfide, and sulfide less

    Jan 1, 1924

  • AIME
    Extractive Metallurgy Division - The Electrical Resistivity of Titanium Slags

    By J. L. Wyatt

    THE smelting of ilmenite to produce a slag rich in titanium, with pig-iron as a byproduct, introduces new concepts in electric smelting metallurgy. Titanium slags are characterized by low electrical r

    Jan 1, 1951

  • AIME
    Storage Bin for Crushed Ore

    By C. W. Dunham

    FROM the primary gyratory crushing plant, described in MacLeod's article, ore is delivered to a large storage or surge bin from which it is carried by two transverse conveyors to the secondary cr

    Jan 1, 1942

  • AIME
    Special Evaluation Problems in Mining

    By Dr. O’Neil Thomas J., Donald W. Gentry

    "If you can hold a board of cross directors In happiness against their gauzy schemes; If you can dodge the wrath of the electors Till dividends will flow as in their dreams; If you can make a mine pay

    Jan 1, 1984

  • AIME
    New Rainbow Bridge Across Niagara River an Engineering Achievement

    By AIME AIME

    COMPLETION of the Rainbow Bridge across the Niagara River and Gorge this fall marks a new page of achievement in the annals of bridge- building. Symbolic of the amity between two great nations, the ne

    Jan 1, 1941

  • AIME
    Mineral Supply As A Stock

    By David B. Brooks

    INTRODUCTION Resources are not; they become (Zimmermann 100) . The companion concepts of reserves and resources appear, one way or another, in almost all considerations of mineral supply. Yet, n

    Jan 1, 1976

  • AIME
    Dry-Hot Versus Cold-Wet Blast-Furnace Gas Cleaning ,And Some Suggestions Regarding Construction Of Hot-Blast Stoves

    By Linn Bradley

    F. H. WILLCOX, Pittsburgh, Pa. (communication to the Secretary*). -We must keep in mind, in balancing the savings-to be anticipated by the most efficient combustion of gas, the best heat absorption by

    Jan 4, 1917

  • AIME
    Library (3f756b46-020e-4183-9ef2-8cd67066697e)

    Accessions AMERICAN ELECTROCHEMICAL SOCIETY, TRANSACTIONS, vol. 33. Bethlehem, Pa. 1918. AMERICAN ASSOCIATION OF PETROLEUM GEOLOGISTS, BULLETIN, vol. 2. 1918. (Gift of the Association.) AMERICAN Y

    Jan 6, 1919

  • AIME
    Iron and Steel Division - Solution Loss and Reducing Power of Blast Furnace Gas - Discussion

    By T. L. Joseph

    S. T. Killian (Johnstown, Pa.)—This is one of the finest papers I have read. Tying in stoichiometric calculations with furnace performance and practice is a step which had to be taken sooner or later.

    Jan 1, 1952

  • AIME
    Technical Notes - Interaction of Dislocations and Long-Range Order

    By N. Brown, M. Herman

    IT has been pointed out by Cottrell' and Fisher that long-range order would produce superdis-locations, consisting of two partial dislocations separated by an out-of-phase region. The mutual repu

    Jan 1, 1957

  • AIME
    Temperature Effect On Salt Dissolution Rate

    By Ahmad Saberian

    Five salt samples 20 to 40 cm tall, sealed on all sides except one, were exposed to a series of dissolution tests in various brine solutions and at different temperatures. Solvents were in the 50 to 9

    Jan 1, 1985

  • AIME
    Canada Cement Co. Building Highly Automated Plant In Nova Scotia

    By A. O. Drysdale

    In Canada, the market for cement is not a national one but rather a collection of local or regional markets. Excess capacity on a national basis does not necessarily preclude a shortage on a regional

    Jan 4, 1965

  • AIME
    Joint Activities (147448a6-5807-4aad-9c16-f6d4c94fa1fc)

    The Institute conducts jointly with the American Society of Civil Engineers, American Society of Mechanical Engineers and American Institute of Electrical Engineers, certain activities as listed below

    Jan 1, 1952

  • AIME
    Institute of Metals Division - Clustering Effects in Superconducting Aluminum-Zinc Alloys

    By C. Chiou, D. P. Seraphim

    The effect of clustering on the superconducting properties of Al-Zn alloys has been studied by the ballistic induction techniques. The superconducting critical temperature, T,, changes when zinc-ric

    Jan 1, 1963

  • AIME
    Engineering Reasearch - Phase Behavior in the Methane-propane-n-pentane System (Petr. Tech., July 1942)

    By R. H. Dourson, B. H. Sage, W. N. Lacey

    The compositions of coexisting phases in the methane-propane-n-pentane system were determined at 160° and -2 20°F. throughout the two-phase region, at pressures above 500 lb. per sq. in. The experimen

    Jan 1, 1943

  • AIME
    Engineering Reasearch - Phase Behavior in the Methane-propane-n-pentane System (Petr. Tech., July 1942)

    By W. N. Lacey, R. H. Dourson, B. H. Sage

    The compositions of coexisting phases in the methane-propane-n-pentane system were determined at 160° and -2 20°F. throughout the two-phase region, at pressures above 500 lb. per sq. in. The experimen

    Jan 1, 1943