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  • AIME
    Institute of Metals Division - Twinning in Columbium

    By Carl J. McHargue

    Mechanical twins were produced in electron-beam melted columbium by high-speed impact at room temperature and by slow or fast compression at -196°C. The composition plane of the twins was { 112} and t

    Jan 1, 1962

  • AIME
    Institute of Metals Division - Twinning in Columbium -Vanadium Alloys

    By D. O. Hobson, J. O. Stiegler, C. J. McHargue

    The effects of alloy composition, deformation temperature, heal treatment, ad inlerstilial contamination on the occurrence of deformation twins were studied. The twinning transition temperature varied

    Jan 1, 1965

  • AIME
    Institute of Metals Division - Two Types of Discontinuous Precipitation in Alpha Iron Solid Solutions

    By E. Hornbogen

    Discontinuous precipitation in a iron can occur by at least two different mechanisms. These mechanisms are compared, using observations made on an Fe-22 at. pct Zn alloy and an Fe-19.5 at. pct Mo all

    Jan 1, 1963

  • AIME
    Institute of Metals Division - Ultrasonic Attenuation Study of Dislocation Motion Part I. Theoretical

    By Robert E. Green

    Formulae are given for calculating the modes of wave propagation in a single-crystdl specimen possessing a given crystallographic orientation. Such calculations lead to determination of the orientatio

    Jan 1, 1964

  • AIME
    Institute of Metals Division - Ultrasonic Attenuation Study of Dislocation Motion Part II. Experimental

    By Robert E. Green, Robert A. Swanson

    Ultrasonic attenuation and stress were measured simultaneously as a function of strain for aluminum single crystals tested in compression. The propagation mode and polarization of the ultrasonic waves

    Jan 1, 1964

  • AIME
    Institute of Metals Division - Undercooling of Minor Liquid Phases in Binary Alloys

    By C. S. Smith, Chih-Chung Wang

    TURNBULL and his collaborators1,2 have developed the theory of homogeneous nucleation as applied, inter alia, to solidification of liquid metals. Vonnegut³ and Turnbull4 have shown that if a liquid me

    Jan 1, 1951

  • AIME
    Institute of Metals Division - Undercooling of Minor Liquid Phases in Binary Alloys - Discussion

    By C. S. Smith, Chih-Chung Wang

    D. Turnbull—In the opinion of the writer the most interesting result described in this paper is that the distribution of tin with respect to solidification temperature has several fairly well-defined

    Jan 1, 1951

  • AIME
    Institute of Metals Division - Upper Nose Temper Embrittlement of a Ni-Cr Steel (Discussion 1316)

    By L. D. Jaffe, D. C. Buffum

    EARLIER the authors and coworkers had pre sented data on isothermal temper embrittlement of an SAE 3140 steel?' In that work, however, attention was concentrated on embrittlement at 575°C and bel

    Jan 1, 1958

  • AIME
    Institute of Metals Division - Uranium Diffusivity in Liquid Cadmium

    By Leslie Burris, J. C. Hesson

    The diffusivity of uranium in liquid cadmium has been measured as a function of temperature by the capillary -bath technique. The diffusivity measurements were made at 4509 500°, 575º, and 650°C, over

    Jan 1, 1963

  • AIME
    Institute of Metals Division - Uranium-Bismuth System

    By R. J. Teitel

    FOUR or five years ago an investigation was initiated to study and develop basic information on llquid metal fuels for future power nuclear reactors. The objective was to find fluid forms of uranium (

    Jan 1, 1958

  • AIME
    Institute of Metals Division - Uranium-Chromium System

    By A. H. Daane, A. S. Wilson

    The U-Cr system is of the simple eutectic type with some solid solubility of chromium in r and ß uranium. The eutectic occurs at 20 atomic pet Cr and melts at 859°C. The maximum solubility of chromium

    Jan 1, 1956

  • 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
    Institute of Metals Division - Uranium-Titanium Alloy System (Discussion page 1317)

    By M. C. Udy, F. W. Boulger

    AN incomplete phase diagram for the U-Ti systern was determined earlier 1 and more recently, a tentative diagram was presented for the uranium-rich end of the system.' In the present re-examinati

    Jan 1, 1955

  • AIME
    Institute of Metals Division - Uranium-Zinc System

    By H. H. Klepfer, K. J. Gill, P. Chiotti

    SOME observations relative to the U-Zn system have been made by other investigators. Chipman1 and Carter2 have reported the preparation of several U-Zn alloys and point out that these alloys are gener

    Jan 1, 1958

  • AIME
    Institute of Metals Division - Use of Axis Distribution Charts to Represent Sheet Textures

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

    The use of axis charts for representing the texture of cold-rolled thorium sheet was compared with conventional pole figures. Four texture components were deduced from the axis charts and shown to be

    Jan 1, 1961

  • AIME
    Institute of Metals Division - Use of Vanadium Nitride Inclusions for the Development of Cube-on-Edge Texture in 3 pct. Si-Fr

    By H. C. Fiedler

    A high degree of cuhe-on-edge grain orientation and good magnetic properties were obtained in Si-Fe strip processed from laboratory heats containing vanadium nitride inclusions. The higher the nitroge

    Jan 1, 1962

  • AIME
    Institute of Metals Division - Vacuum Desulfurization of Liquid Iron Alloys

    By T. P. Floridis

    It was deemed desirable to obtain an understanding of the vacuum desulfurization process. McKechnie1 has reported that the sulfur content of nickel- and cobalt-base alloys is reduced in vacuo. Ke

    Jan 1, 1960

  • AIME
    Institute of Metals Division - Vacuum Effects on the Tensile and Creep Properties of Aluminum

    By I. R. Kramer, H. Shen, S. E. Podlaseck

    The tensile and creep properties of aluminum in vacuum have been investigated. It was found that the general effect of a vacuum environment was to reduce the rate of work hardening. Results obtained f

    Jan 1, 1965

  • AIME
    Institute of Metals Division - Vanadium-Oxygen Solid Solutions

    By H. T. Sumsion, A. U. Seybolt

    The results of an investigation of vanadium-rich V-O solid solutions are presented, indicating the structure and lattice parameters of two solutions, a and ß, and their approximate temperature-composi

    Jan 1, 1954

  • AIME
    Institute of Metals Division - Vanadium-Uranium Constitutional Diagram

    By H. A. Saller, F. A. Rough

    Studies of the V-U system have been made to determine the constitutional diagram. The diagram is fairly simple, since no intermediate phases are formed. Additions of vanadium lower the uranium melting

    Jan 1, 1954