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  • AIME
    Iron Ore and Its Relation to the Defense Program

    By JOHN R. SUMAN

    IT SEEMS particularly appropriate that the Institute's Regional Meeting should be held in Minnesota this year. Whether we like it or not, we cannot help looking at things now in the light of the

    Jan 1, 1941

  • AIME
    Timbering at the Hecla Mine

    By ALEXANDER S. CORSUN

    THE main orebody in the Hecla mine, Burke, Ida- ho, occurs along a nearly vertical shear zone in the Burke quartzite, with a substantial gouge and lamprophyre dike occurring in an irregular manner thr

    Jan 1, 1930

  • AIME
    Hydraulic Stripping of a Stone Quarry

    By Mark Sheppard

    DURING the winter of 1937, the writer visited a West Virginia stone, quarry at which the overburden is stripped hydraulically. The quarry is in a bed of limestone, about 200 ft. thick, which outcrops

    Jan 1, 1938

  • AIME
    Minerals Beneficiation - Hydroxamate vs. Fatty Acid Flotation of Iron Oxide

    By R. W. Harper, M. C. Fuerstenau, J. D. Miller

    Data were obtained with hematite with octyl hydroxamate and oleate as collectors to determine the mechanism of collector adsorption and also to establish the roles that conditioning time and temperatu

    Jan 1, 1971

  • AIME
    Some Suggestions Concerning Ore Genesis

    By Grimes, J. A.

    EXTENSIVE discovery 'and rapid exploitation of orebodies within the past half century have attracted many able geologists to the mining industry and furnished them a wealth of data from which to

    Jan 1, 1928

  • AIME
    Part X - The 1967 Howe Memorial Lecture – Iron and Steel Division - Nucleation and Growth of Martensite in Some Uranium-Chromium Alloys

    By G. Kimmel, A. Bar-Or

    The rate of nucleation and the rates of both lateral and longitudinal growth of martensite plates (needles) in b—a transformation were determined as a function of temperature, in various U-Cr alloys.

    Jan 1, 1968

  • AIME
    Papers - - Produciton - Domestic- Oil and Gas Development in Colorado in 1934

    By C. E. Shoenfelt

    Operations ill Colorado oil fields in 1934 were not quite so extensive as in 1933, but much better results were obtained and one new oil field was discovered. In all, 26 wells were drilled, of which 9

    Jan 1, 1935

  • AIME
  • AIME
    Secondary Recovery and Pressure Maintenance - The Role of Vaporization in High Percentage Oil Recovery by Pressure Maintenance

    By A. B. Cook

    Gas cycling is generally considered a much less efficient oil recovery mechanism than water flooding. HOWever, recoveries from some fields have been exceptionally high as a result of gas cycling. Reco

  • AIME
    Stratiform Uranium Deposit

    GENERAL GEOLOGICAL DESCRIPTION The uranium mineral appraisal herein described was made for an ore deposit in New Mexico. The uranium mineralization occurs as roughly tabular to lens-shaped deposits

    Jan 1, 1980

  • AIME
    Institute of Metals Division - Preferred Orientation in Extruded Aluminum Rod

    By L. K. Jetter, J. C. Ogle, C. L. McHargue

    The preferred orientation developed in extruded aluminum rods has been studied as a function of extrusion temperature, extrusion speed, and position in the rod. Duplex <111> - <001> textures were de

    Jan 1, 1960

  • AIME
    Uranium Hints For The Prospector And Miner

    By Philip W. Simmons

    THE Colorado Plateau uranium province is in a mining boom rivaling the most colorful days of the early West. The application of scientific skills and the use of modern and novel mechanical equipment,

    Jan 4, 1954

  • AIME
    Part IX - Papers - Prediction of Extrusion Pressures in the Cold Forging of Steel

    By L. J. Kashar

    By means of a continuum-mechanics approach, the following equation for calculuting the pressure for axisymmetric cold forging has been derived: where P is the extrusion pressure; K and n are the st

    Jan 1, 1968

  • AIME
    Membership (a94e0fd0-b84d-485b-bf9f-87c2437839b1)

    NEW MEMBERS The following list comprises the names of those persons who became members during the period Oct. 10, 1916 to Nov. 10, 1916. ANCHOR, HANS C., Supt., Dome Extension Mines Co., Ltd., South

    Jan 12, 1916

  • AIME
    Institute of Metals Division - Thermodynamic Treatment of Disproportionation Equilibria Involving Complex Ion Formation in Molten Salts

    By J. M. Toguri, K. Grjotheim

    It is known 1,2 that the equilibrium between titanium metal, TiCl2 , and TiCl3, in a solvent of molten metal chlorides, is influenced both by the total amount of dissolved titanium and by the type of

    Jan 1, 1960

  • AIME
    Technical Notes - Allotropic Transformations in Titanium, Zirconium, and Uranium Alloys

    By Austin E. Dwight

    IT has been shown by Oelsen and Wever&apos; that the effect of a solute element on the allotropic transformation in iron is dependent upon the quantity

    Jan 1, 1957

  • AIME
    Institute of Metals Division - The Germanium-Tellurium Phase Diagram in the Vicinity of the Compound GeTe (TN)

    By W. A. Tiller, J. P. McHugh

    THE phase diagram of the Ge-Te system was first investigated by Klemm and Frischmuth.&apos; They arrived at the phase diagram shown in Fig. 1 indicating the presence of a peritectic phase boundary at

    Jan 1, 1961

  • AIME
    The Southeast Missouri Lead District

    By G. C. Broadhead

    THE lead district of Southeast Missouri covers an area of over 3000 square miles, including Maries County on the west, Jefferson on the east, Franklin on the north, and part of Madison on the south, o

    Jan 1, 1877

  • AIME
    Tailings And Mine-Dump Reclamation In The Coeur D'Alenes During World War II

    By W. L. Zeigler

    DURING the middle 1880s, shortly after the discovery of silver-lead ores in the Coeur d&apos;Alene district of northern Idaho, it became apparent that concentration of the ores would be necessary to o

    Jan 1, 1947

  • AIME
    Industrial Minerals - Texas White Firing Bentonite

    By Forrest K. Pence

    Bentonite deposits are known to occur in Texas within the Jackson group of formations. This group represents the uppermost Eocene age sediments found in the coastal plain area of Texas. It outcrops ac

    Jan 1, 1950