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  • AIME
    Pure Coal as a Basis for Classification

    By F. V. Tideswell

    THE suggestion, which appears to find increasing favor, that the elementary composition of coals should be used as the basis of their classification, makes it important that our methods of expressing

    Jan 1, 1928

  • AIME
    Metal and Mineral Shortages and Substitutions in National Defense

    By Frank T. Sisco

    SHORTAGES of metals and minerals and substitution of less critical materials for those in which a virtual famine exists received detailed and frank discussion at a recent conference in Washington call

    Jan 1, 1941

  • AIME
    Meteorological Influence On Radon Concentration In Drillholes

    By Allan B. Tanner

    The effects of radon in drillholes on gamma-ray logs have been described by L. S. Hilpert and C. M. Bunker1 Since these effects may cause drastic error in the evaluation of uranium deposits, it is use

    Jan 7, 1959

  • AIME
    Rock Mechanics Testing Of Large Diameter Core At The Crandon Deposit

    By Roger G. Rowe

    In late 1980, Exxon Minerals Company performed rock mechanics testing on oriented 150 mm drill core from their 75Fi tonne massive sulfide deposit near Crandon, Wisconsin. Instrumented samples from dep

    Jan 1, 1982

  • AIME
    Chromium Alloys?II

    By Frederick M. Becket

    AFTER all the chronology that has been given, what is the present status of chromium steels? For the purpose of this discussion the different types of chromium steels can be divided into three classif

    Jan 1, 1929

  • AIME
    Petroleum and Gas Meeting

    By AIME AIME

    A SPECIAL meeting arranged by the Petroleum and Gas Committee of the American Institute of Mining and Metallurgical Engineers was held on Tuesday and Wednesday, Sept. 21 and 22, in the Assembly Room o

    Jan 1, 1920

  • AIME
    Recrystallization And Precipitation Of Aging Of Tin-Bismuth Alloys

    By J. E. Burke, C. W. Mason

    IN attempting to study precipitation from a tetragonal lattice using solid solutions of bismuth in tin, it was found that although a Widnmanstatten pattern is observed 1 only a qualitative analysis of

    Jan 1, 1941

  • AIME
    Buffalo Paper - A Modification of Bischof's Method for Determining the Fusibility of Clays, as Applied to Non-Refractory Clays, and the Resistance of Fire-Clays to Fluxes

    By H. O. Hofman

    INSTITUTE OF TECHNOLOGY, In deternlining experimentally the fusibility of clays, two kinds of methods may be distinguished—the direct and the indirect. Of the direct methods, that of Seger has foun

    Jan 1, 1899

  • AIME
    Jones and Laughlin's Development at Benson Mines

    By Edward H. Robie

    OF the current Adirondack iron mine development, the Benson Mines operation of the Tones and Laughlin Ore Co. (Jones & Laughlin Steel Corp. wholly owned subsidiary) is the last to go into operation. F

    Jan 1, 1943

  • AIME
    Institute of Metals Division - The Oxidation of 'Reactive' Uranium Carbide

    By E. W. Murbach

    The oxidation of uranium carbide by oxygen at various pressures, and by air, has been investigated at temperatures up to 600°C. Arc-melted and cast uranium carbide displays oxidation behavior that app

    Jan 1, 1963

  • AIME
    Institute of Metals Division - Nitrogen-Induced Internal Friction in Chromium

    By Mark J. Klein, A. H. Clauer

    The Snoek peak induced by solute nitrogen in chromium was studied. A rapid quenching rate is required to maintain nitvogen in solution in sufficient concentrations to be detectable by internal-frictio

    Jan 1, 1965

  • AIME
    Technical Notes - High Temperature Corrosion in Nickel-Chromium Alloys

    By L. Thomassen, N. Spooner, J. M. Thomas

    NI-CR and some Ni-Cr-Fc alloys, when used as electrical resistance heating elements in reducing atmospheres, at times suffer rapid breakdowns due to so-called "green rot." These reducing atmospheres a

    Jan 1, 1954

  • AIME
    Production - Domestic - Oil and Gas Development and Production in North Texas for the Year 1942

    By R. B. Gilmore, Lewis W. MacNauhgton

    The North Texas district, as' herein defined, includes the counties of Archer, Baylor, Clay, Cooke, Foard, Hardeman, Knox, Montague, Wichita, and Wilbarger. This area covers generally the crest a

    Jan 1, 1943

  • AIME
    Production - Domestic - Oil and Gas Development and Production in North Texas for the Year 1942

    By R. B. Gilmore, Lewis W. MacNauhgton

    The North Texas district, as' herein defined, includes the counties of Archer, Baylor, Clay, Cooke, Foard, Hardeman, Knox, Montague, Wichita, and Wilbarger. This area covers generally the crest a

    Jan 1, 1943

  • AIME
    The Constitution Of Copper-Rich Copper-Silicon-Manganese Alloys

    By Walter R. Hibbard, Cyril Stanley Smith

    IN 1929 one of the authors' determined the constitution of copper-silicon-manganese alloys containing over 90 per cent copper. Through a combination of circumstances the presence of the copper-si

    Jan 1, 1942

  • AIME
    Papers - Constitution of Copper-rich Copper-silicon-manganese Alloys. (T.P. 1418)

    By Walter R. Hibbard, Cyril Stanley Smith

    IN 1929 one of the authors1 determined the constitution of copper-silicon-manganese alloys contailling over go per cent copper. Through a combination of circumstances the presence of the copper-silico

    Jan 1, 1942

  • AIME
    Papers - Constitution of Copper-rich Copper-silicon-manganese Alloys. (T.P. 1418)

    By Walter R. Hibbard, Cyril Stanley Smith

    IN 1929 one of the authors1 determined the constitution of copper-silicon-manganese alloys contailling over go per cent copper. Through a combination of circumstances the presence of the copper-silico

    Jan 1, 1942

  • AIME
    Division Lectures - The Thirty-ninth Henry Marion Howe Memorial Lecture - The Strengthening of Steel

    By Morris Cohen

    STAFF: Editor, Gerhard Derge Acting Editor, Paul G. Shewmon Carnegie Institute of Technology Schenley Park Pittsburgh 13, Pa. Editorial Assistant, M. A. Redmerski Production Editor,

    Jan 1, 1962

  • AIME
    Hardenability Calculated From Chemical Composition

    By M. A. Grossmann

    THE hardenability of most steels can be predicted within 10 to 15 per cent provided the complete chemical composition is known, including "incidental" elements; and provided the as-quenched grain size

    Jan 1, 1942

  • AIME
    Hardenability Calculated From Chemical Composition (85a50570-50fd-414d-9d4c-1d1717802b23)

    By M. A. Grossman

    THE hardenability of most steels can be predicted within 10 to 15 per cent provided the complete chemical composition is known, including "incidental" elements; and provided the as quenched grain size

    Jan 1, 1942