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  • AIME
    Drilling-Equipment, Methods and Materials - Design and Operation of Jet-Bit Programs for Maximum Hydraulic Horsepower, Impact Force or Jet Velocity

    By H. A. Kendall, W. C. Goins

    Several investigations in recent years have shown that drilling rates are increased significantly with increased hydraulic horsepower. But, there has been no over-all method of designing jet-bit progr

  • AIME
    Technical Papers and Discussions - Aluminum and Aluminum Alloys - Precipitation in Age-hardened Aluminum Alloys By (Metals Tech., Oct. 1946, T.P. 2108, with discussion)

    By A. H. Geisler, F. Keller

    Although the subject of precipitation from solid solution appears to be one of the more profitable fields in metallurgy for study with the electron Microscope, few comprehensive studies have yet been

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Aluminum and Aluminum Alloys - Precipitation in Age-hardened Aluminum Alloys By (Metals Tech., Oct. 1946, T.P. 2108, with discussion)

    By F. Keller, A. H. Geisler

    Although the subject of precipitation from solid solution appears to be one of the more profitable fields in metallurgy for study with the electron Microscope, few comprehensive studies have yet been

    Jan 1, 1947

  • AIME
    Pipelining – Equipment, Methods and Materials - General Turbulent Pipe Flow Scale-Up Correlation for Rheologically Complex Fluids

    By L. L. Melton, D. L. Lord, B. W. Hulsey

    A mathematical model d1.20p/4L = A(8v)8 derived from the Blasius equation is proposed to be applicable to turbulent flow through straight cylindrical pipe for time-independent fluids which produce a d

  • AIME
    PART V - Mixed-Control Reaction Kinetics in the Gaseous Reduction of Hematite

    By W. O. Philbrook, R. H. Spitzer, F. S. Manning

    A generalized mathematical model has been developed to describe the kinetics of gas-solid reactions with special attention given to the hydrogen reduction oj dense spheres of hematite. This reduction

    Jan 1, 1967

  • AIME
    A Study Of Segregate Structures In Copper-Tin And Silver-Zinc Alloys

    By D. W. Smith

    THE beta solid solution phases of the systems copper-zinc, copper-aluminum, copper-tin and silver-zinc are structurally analogous.1 R. F. Mehl and 0. T. Marzke2 have shown that the a phase upon segreg

    Jan 1, 1932

  • AIME
  • AIME
    Colorado Paper - Carbocoal (with Discussion)

    By C. T. Malcomson

    An elaborate series of experiments has been conducted during the past three years at Irvington, N. J., which has resulted in the perfection of a process for the manufacture of smokeless fuel from high

    Jan 1, 1920

  • AIME
    Frontiers of Uranium Exploration

    By John W. Gabelman

    Uranium exploration technology historically has followed the economic cycle of demand, exploration spurt, and trailing supply; but with a greater lag. Greatest progress was made during the wane of dem

    Jan 1, 1976

  • AIME
    Metal Mining Methods

    Jan 1, 1925

  • AIME
    Proceedings Of The One Hundred Fifteenth Meeting, St. Louis- Joplin-Miami-Tulsa

    Oct. 8 to 13, inclusive, 1917 COMMITTEES Committee on Arrangements H. A. BUEHLER, Chairman W. E. MCCOURT, Secretary C. J. ADAM L. L. HUTCHISON VICTOR RAKOWSKY J. A. CASELTON EUGENE MCAULIFFE J.

    Jan 12, 1917

  • AIME
    Index D – F (a04f438b-1219-4f2b-87ff-63047b2b8958)

    [Cyanidation: Fresnillo, Mexico. 112. 734, 739. Abs.. YB84. 34 gold ore: before or after amalgamation. respective merita. 118, 538 high residue avoided by milling in water, 118, 542 Homestak

    Jan 1, 1936

  • AIME
    Industrial Minerals And Rocks (Nonmetallics Other Than Fuels) - Abrasives

    By Raymond B. Ladoo

    ABRASIVES include the substances, natural or artificial, that are used to grind, polish, abrade, scour, clean or otherwise remove solid material, usually by rubbing action but also by impact (sandblas

    Jan 1, 1949

  • AIME
    The Aeroplane in Engineering

    By Louis Huntoon

    THE USE of the aeroplane in engineering work is quite recent. Its general application to all branches of engineering, including mining and metallurgical engineering, is increasing and its possible use

    Jan 12, 1923

  • AIME
    Institute of Metals Division - Uranium-Silicon Alloys

    By A. Kaufmann, B. Cullity, G. Bitsianes

    T0 determine the bulk of the phase diagram, techniques for melting, thermal analysis, heat treatment, metallography, and X-ray diffraction that have already been described were used.' It proved d

    Jan 1, 1958

  • AIME
    The Permanent Growth of Gray Cast Iron

    By Walter Remmers

    THE fact that gray iron increases in volume, cracks and distorts upon repeated heating and cooling is rather common knowledge. In ingot molds, Diesel engine pistons, carburizing boxes, continuous furn

    Jan 1, 1930

  • AIME
    1976 Annual Review of Mining, Exploration and Mineral Processing

    By Alphonse C. Van Besien, Arcy A., L. T. Larson, D&apos Shock, J. W. Peters, Ted H. Eyde, Dermot Ross-Brown, David L. Campbell, W. W. Dudley, John P. Bunch

    Over the last several years, unfavorable economic and political pressures on open-pit mining have placed the industry in a generally defensive position. As a consequence, there have been changes in th

    Jan 2, 1977

  • AIME
    Geology And Utilization Of Tennessee Phosphate Rock

    By Richard Smith

    After a brief history of the phosphate industry of Tennessee, the distribution and origin of the phosphate rocks are described. Then the mining and treatment, together with costs of production, and th

    Jan 9, 1924

  • AIME
    The Eotvos Torsion Balance Method of Mapping Geologic Structure

    By Donald Barton

    THE theory of gravitation is based on Newton's law that any two bodies exert a mutual attraction which is proportional to the product of their masses and inversely proportional to the square of t

    Jan 1, 1928

  • AIME
    New York September, 1890 Paper - Iron and Labor

    By A. S. Hewitt

    After an interval of fourteen years, saddened for all of us by the death of David Thomas, the father of the anthracite iron-trade, first president of the Institute, and by the untimely loss of his suc

    Jan 1, 1891