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  • AIME
  • AIME
  • AIME
    Malleable Cast-Iron

    By R. H. Terhune

    THE enormous production of pig-iron, together with the many difficult and interesting problems with which its manufacture is fraught, has secured to this industry the exclusive attention of scientists

    Jan 1, 1873

  • AIME
    Institute of Metals Division - The Crystallographic Angles of Indium (TN)

    By E. A. Cisney

    The formula for calculating the crystallographic angles of a tetragonal lattice is: C°S =where $ is the angle between planes (HKL) and (hkl). The angles in Table I have been calculated for indium

    Jan 1, 1960

  • AIME
    Progress Report on Grinding at Tennessee Copper Company

    By J. F. Myers, F. M. Lewis

    The paper reports the development of a large, slow speed ball mill closed circuited with a hydroscillator. This increased grinding efficiency 28 pct over conventional units.

    Jan 6, 1950

  • AIME
  • AIME
    Development Of Drawings For A Comminution Plant Layout Through Design

    By John Ziats

    This chapter covers the drawing requirements for the design of a comminution plant.

    Jan 1, 1982

  • AIME
    Richmond Paper - Specifications for Steel Rails (Discussion, 967)

    By W. R. Webster

    Opinions still differ widely concerning the requirements, chemical and physical, which should be expressed in specifications for steel rails, in order to secure results satisfactory to both manufactur

    Jan 1, 1902

  • AIME
    Medals and Awards (8887c3a7-3597-48a5-8918-d0b7ce96098c)

    The Institute is custodian of funds for support of numerous gold medals and prizes and has representatives on boards awarding still others. Details regarding the Institute Awards are given below. The

    Jan 1, 1923

  • AIME
    Scoping Regulatory Requirements

    By Bruce Vandre

    Jan 1, 1985

  • AIME
  • AIME
  • AIME
    Uses of Blast-Furnace Slags

    By T. Prof. Egleston

    IF we may characterize the aim of metallurgists twenty years ago by any one point towards which their efforts were especially directed, we should say it was the idea of adapting "waste products" to so

    Jan 1, 1873

  • AIME
    Institute Committees (db7e7e29-696f-42bb-a4b7-2462e60160b6)

    EXECUTIVE COMMITTEES OF LOCAL SECTIONS New York L. W. FRANCIS, Chairman, WILLARD S. MORSE,. Vice-Chairman. THOMAS T. READ, Secretary, Woolworth Bldg., New York, N. Y. P. A. MOSMAN, Treasurer. LO

    Jan 8, 1914

  • AIME
    Resurrection Cuts Mining Costs - Makes Lower Grade Ore Economic

    By C. N. Stout

    Square-sets go out and labor saving combination of top-slicing and sub-level caving raises tons per man hour 300 pct, cuts timber cost 50 pct to permit mining lower grade ores.

    Jan 1, 1953

  • AIME
    Technical Notes - Crystallographic Angles for Bismuth and Antimony

    By Edward I. Salkovitz

    RECENTLY a set of crystallographic angles for bismuth was calculated and a standard (111) projection was constructed. Since these calculations

    Jan 1, 1957

  • AIME
    PART VI - Communications - Interplanar Angles for Tetragonal Crystals

    By Paul Cherin

    ThE angle of intersection, 0, between h2k2l2 planes and the (loo), (110), (101), and (111) planes was calculated on an IBM 7040 using the well-known relationship

    Jan 1, 1968

  • AIME
    Optimizing Roof Truss Installations with Body-Loaded Photoelastic Models (97dcf065-da3c-4020-808a-a96975ed80b6)

    By Lawrence Adler

    The authors are to be complimented on using a novel and potentially helpful technique to analyze the effects of mine roof trusses. However, some criticisms of their application and analysis seem appro

    Jan 12, 1978

  • AIME
    Technical Notes - Relation Between Initial Creep Rate and Resolved Shear Stress in Zinc Single Crystals

    By N. Brown, J. Washburn, E. R. Parker

    MOST previous quantitative work on creep of single crystals has been concerned primarily with developing empirical equations for the creep curve. Although the equations used by Cottrell and Ayte

    Jan 1, 1954

  • AIME
    Design And Startup Of The Pinto Valley Digital Control System

    By Wayne D. Gould, Terry O. Arney

    The Pinto Valley digital control system is a supervisory system interfaced with a conventional analog control system. The design criteria, the hardware selection, and the startup of the system in the

    Jan 1, 1978