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  • AIME
    Metal-Losses In Copper-Slags.

    By J. PARKCEH CHANNING

    Discussion of the paper of Lewis T. Wright, presented at the New Haven meeting, February, 1909 (Trans., xl., 492 to 495). J. PARKE CHANNING, New York, N. Y. (communication to the Secretary*):-Mr. Wr

    Feb 1, 1911

  • AIME
    Metall Mining Corporation: A Company In Transition

    By Klaus M. Zeitler

    INTRODUCTION One cannot discuss the subject of "Raising Capital in the 1990s" without having a crystal ball and a reliable fortune teller. This discusses "Raising Capital for the 1990sW, which is w

    Jan 1, 1990

  • AIME
    Metallic And Nonmetallic Mineral Developments Of 1961

    Although copper production established a new record, lead and zinc registered gains, and iron production held steady, the mixed trend in metallic and nonmetallic mining and generally lower prices in 1

    Jan 2, 1962

  • AIME
    Metallic Coatings for Steel

    By Marvin J. Udy

    THREE GENERAL REASONS exist for applying metallic coatings to steel: to improve its appearance, to resist corrosion, and to resist wear and abrasion. Coating steel with other metals to improve the app

    Jan 1, 1932

  • AIME
    Metallic Electrodes for Cast-iron Arc Welding

    By Shun-ichi Satoh

    THE electric arc welding of cast iron has been studied by Braune, Lamberton, Schimpke, Kenyon, Gale Manufacturing Co., Wedemeyer, Candy, Neese, Miller, Carter, American Welding Society, Namack, Lebrun

    Jan 1, 1929

  • AIME
    Metalliferous Sediments of the East Pacific

    By Jack R. Dymond, Ronald G. Senechal, Robert O. Rye, Cyrus W. Field, Joseph F. Whelan

    Metalliferous sediments are present through- out much of the ocean basins and are locally prominent in the sedimentary column on and near the Nazca plate of the east-southeast Pacific Ocean. They typi

    Jan 1, 1983

  • AIME
    Metallized Slurry Blasting At Eagle Mountain

    By H. M. Conger

    Kaiser Steel Corporation's Eagle Mountain mine is located in the Colorado Desert, 60 miles east of Indio, California. Iron concentrates from the mine are shipped by rail 164 miles to the' Co

    Jan 11, 1965

  • AIME
    Metallogeny in Russia’s Drive for Ore Deposits

    By Leonid Bryner

    For many years, geologists have inferred a connection between the evolution of the earth's crust and ore deposition, a connection coming under the heading of metallogeny. In recent years the conc

    Jan 6, 1963

  • AIME
    Metallogeny: A Key To Exploration

    By Philip W. Guild

    Approaching exhaustion of areas where traditional prospecting methods can pay off and sharply rising costs require increasing sophistication in planning exploration. Most outcrops, not only of ore and

    Jan 1, 1971

  • AIME
    Metallography of Commercial Thorium

    By Edmund Davenport

    Tier; production of thorium of high purity by the Ca-CaCl2 reduction has been described by Marden and Rentschler,1 who also reported some of the properties of the coherent, ductile metal obtained from

    Jan 1, 1929

  • AIME
    Metallography Of Rifle-Barrel Steel

    By G. F. Jr. Butterworth

    THE metallographic structures most frequently encountered in rifle barrels, and which are illustrated by the accompanying photomicrographs, fall naturally into two groups, distinguished by the method

    Jan 7, 1919

  • AIME
    Metallography of Steel for United States Naval Ordnance

    By Harold Cook

    THE purpose of this paper is to state briefly the inspection requirements of the Bureau of Ordnance, the specifications governing the inspection, and the physical and chemical properties of the steel

    Jan 2, 1916

  • AIME
    Metallography of Steel for United States Naval Ordnance (afef6273-0eb6-4769-b422-4b3ef9c804e3)

    By Harold Cook

    Discussion of the paper of HAROLD EARLE COOK, presented at the New York meeting, February, 1916, and printed in Bulletin No. 110, February, 1916, pp. 375 to 400. ALBERT SAUVEUR, Cambridge, Mass.-I th

    Jan 5, 1916

  • AIME
    Metallography With The Electron Microscope

    By Charles S. Barrett

    THIS paper is a progress report covering metallographic applications of the electron microscope that have been made during the past year at Carnegie Institute of Technology. An account is presented of

    Jan 1, 1943

  • AIME
    Metallurgical Applications of the DorrClone

    By Frank T. Weems

    The basic operating properties of the DorrClone are discussed and certain metallurgical applications which exploit these properties are presented. An effective method of controlling the consistency of

    Jan 8, 1951

  • AIME
    Metallurgical Control at the Tooele Concentrator

    By O. E. KEOUGH

    AT the Tooele custom lead-zinc ore concentrator,' two sections, each having a daily capacity of 500 to 600 tons, are operated on slightly different types of ores with but little difference in flo

    Jan 1, 1930

  • AIME
    Metallurgical Cutting for Fabrication, Repair, or Demolition

    By H. H. Moss

    OXYACETYLENE .cutting has experienced rapid development in the last few years and greater advances and expansion and broader application may be expected in the immediate future. Marked changes in cutt

    Jan 1, 1936

  • AIME
    Metallurgical Education Discussed

    By AIME AIME

    AT the meeting on Engineering Education on Mon- A day afternoon E. A. Holbrook, of the University of Pittsburgh and chairman of the Committee, presided as chairman with W. B. Plank acting as vice- cha

    Jan 1, 1930

  • AIME
    Metallurgical Effects Produced In Steel By Fusion Welding

    By A. B. Kinzel

    PRECISE knowledge regarding the effect of heat treatment on the properties of steel has made possible the detailed specifications and instructions covering optimum heat-treating temperatures and pract

    Jan 1, 1935

  • AIME
    Metallurgical Effects Produced in Steel by Fusion Welding (3aea5b8b-9561-4f4e-8e31-dc5c13751cdd)

    By A. B. Kinzel

    PRECISE knowledge regarding the effect of heat treatment on the properties of steel has made possible the detailed specifications and instructions covering optimum heat-treating temperatures and pract

    Jan 1, 1935