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  • AIME
    Index of Titles and Authors

    By AIME AIME

    Acid Open-Hearth Manipulation.. By ANDREW MCWILLIAM and WILLIAM H. HATFIELD, ii, 279. Discussion by J. J. MORGAN, iii, 647; E. H. SANITER, iii, 648; MCWILLIAM and HATFIELD, 111, 648. ADDICKS, LAWRE

    Jan 1, 1907

  • AIME
    Coal - Agglomerating Fine Sized Ores with Low Temperature Coke

    By C. E. Lesher

    Two processes for agglomerating fine sized ores with low temperature coke are described. One process (Orcarb) agglomerates ores with limited amounts of carbon; the other (ore-carbon pellets) pelletize

    Jan 1, 1956

  • AIME
    Iron and Steel Division - Agglomerating Fine Sized Ores with Low Temperature Coke

    By C. E. Lesher

    Two processes for agglomerating fine sized ores with low temperature coke are described. One process (Orcarb) agglomerates ores with limited amounts of carbon; the other (ore-carbon pellets) pelletize

    Jan 1, 1956

  • AIME
    Federal Taxation of Mines - Discussion

    W. 0. HOTCHKISS, * Madison, Wis.-It was fortunate, in a way, that this subject of income taxation came up during the war when the government could appeal, on the basis of patriotism, to men of large,

    Jan 12, 1919

  • AIME
    Discussions - Of Mr. Stow's paper on Pressure-Fans vs. Exhaust-Fans (see p. 398)

    R. V. Norris, Wilkes-Barre, Pa. (communication to the Secretary*):—Mr. Stow's paper presents a series of arguments, numbered from 1 to 18, concerning the relative merits of four systems of collie

    Jan 1, 1910

  • AIME
    Mechanical Properties Of The Aluminum-Copper-Silicon Alloy As Sand Cast And As Heat Treated

    By Samuel Daniels

    In this paper are given the mechanical properties, determined by the Engineering Division, Air Service, U. S. A., of the 94 per cent. aluminum, 5 per cent. copper, 1 per cent. silicon alloy as sand-ca

    Jan 7, 1925

  • AIME
    Development Drilling And Bulk Sampling

    By Glenn C. Waterman, Scott Hazen

    3.1-1. Purpose. Development drilling is directed towards determining the grade, volume, and three-dimensional outline of a mineralized zone previously located by exploration. It is distinguished from

    Jan 1, 1968

  • AIME
    Rates Of Diffusion In The Alpha Solid Solutions Of Copper

    By Frederick N. Rhines, Robert F. Mehl

    IT has been shown elsewhere1 that the data on the rates of diffusion in solid metals are fragmentary and in many cases unacceptable. As a result, relatively little is known concerning the factors dete

    Jan 1, 1938

  • AIME
    Some Observations on the Recrystallization of an Iron-nickel Alloy

    By George Sachs

    THE process of recrystallization has not as yet been explained satis-factorily. Some definite conclusions could be drawn from recent investi-gations, such as, for example, that recrystallization is a

    Jan 1, 1940

  • AIME
    Rock Dusting in West Virginia

    By Gordon MacVean

    THE adoption of rock dusting, as a safety measure, has made notable progress in the West Virginia coal mines since May, 1925. At that time there were but two mines in the State that were thoroughly ro

    Jan 1, 1926

  • AIME
    Institute of Metals Division - The Diffusivity of Hydrogen in Alpha Iron

    By E. W. Johnson, M. L. Hill

    The dijfusiuity D was determined at 25° to 780°C- from hyd?-ogen evolution rates. Anomalous evolution from air-melted iron was att~zbztted to residual hydrogen, which is interpreted as a hydrogen comp

    Jan 1, 1961

  • AIME
    Physical Defects In Hollow Drill Steel

    By Francis Foley

    Small cracks in a plane normal to the axis of steels are found to be prevalent around the water hole of drill steels that have been in service for an unknown period of time. Cracks are not found on th

    Jan 3, 1924

  • AIME
    Mineral Wool - the Mining Industry's Fastest Growing Product

    By J. R. Thoenen

    IN five years mineral wool has grown to a thirty-million-dollar industry from one whose output was valued, in 1933, at $1,700,000. Ten years ago, in 1928, there were only seven producing companies, wi

    Jan 1, 1939

  • AIME
    Metals Branch and Divisions (57c69f57-551c-4b75-84dd-21dfe5cde154)

    Institute of Metals Division Iron and Steel Division Extractive Metallurgy Division Council A W Thornton (ISD), Chairman, R W Shearman, Secretary, C S Barrett (IMD), J C Kinnear, Jr (EMD), John C

    Jan 1, 1956

  • AIME
    Anaconda's Operation At Darwin Mines, Inyo County, California

    By Dudley L. Davis, E. C. Peterson

    INTRODUCTION THE Darwin District is 30 miles east of Olancha which is 220 miles north from Los Angeles via U. S. Highway No. 6. The ore deposits occur in the Darwin hills that have been elevated ab

    Jan 1, 1947

  • AIME
    Indiana State Division of Geology

    State of Indiana, Department of Conservation, Division of Geology, Indianapolis, Ind. W. N Logan, State Geologist A list of the publications will be sent upon request. A series of yearly report

    Jan 1, 1933

  • AIME
    New York Paper - Nickel Deposits in the Urals

    By H. W. Turner

    The axis of the middle portion of the Ural mountains is made up chiefly of highly compressed igneous and sedimentary schists, considered of Devonian age by the Russian geologists, with large areas of

    Jan 1, 1915

  • AIME
    Fundamental Basis For Classification Of Employees

    The plan for establishing relations of American industry with national labor on a definite basis so closely follows the channels of the efforts of Engineering Council, principally in the classificatio

    Jan 6, 1919

  • AIME
    Application of a Rock Mass Classification to Mining Stability Problems – Some Case Studies

    By P. R. Sheorey

    Understanding of in situ rock mass behaviour has taken a step forward with the advent of the refined rock mass classifications of Wickham, Bieniawski and Barton et al. In this paper six case studies a

    Jan 1, 1983

  • AIME
    Albany Paper - The Geology and the Copper-Deposits of Bisbee, Arizona

    By F. L. Ransome

    The following paper aims to present in a much condensed form the salient results of a detailed geological study of the Bisbee quadrangle, Arizona, carried on during the latter part of the year 1902. I

    Jan 1, 1904