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  • AIME
    Institute of Metals Division - Creep of Polycrystalline Nickel

    By P. Shahinian, J. Weertman

    Minimum creep rates of nickel samples were measured in the stress region of 2.5x107 to 2.8xl0 dyne per sq cm and the temperature region of 400° to 1100°C. The creep rate seems to be proportional to (s

    Jan 1, 1957

  • AIME
    Institute of Metals Division - Creep of Polycrystalline Tin

    By J. E. Breen, J. Weertman

    The creep rate of polycrystalline tin was studied as a function of temperature and stress in constant stress experiments. The temperature was varied from room temperature to almost the melting point o

    Jan 1, 1956

  • AIME
    Institute of Metals Division - Creep of Single Crystals and Polycrystals Of Aluminum, Lead. and Tin (Discussion p. 1299)

    By O. D. Sherby, J. E. Dorn, C. D. Wiseman

    MCLEAN' has shown that the total strain obtained during creep of aluminum polycrystals arises exclusively from the mechanisms of 1) microscopically observable slip, 2) subgrain tilting, and 3) gr

    Jan 1, 1958

  • AIME
    Institute of Metals Division - Creep Properties of Commercially Pure Titanium

    By M. J. Sinnott, W. R. Kiessel

    The creep characteristics of commercially pure titanium sheet in the annealed state, cold-worked state, and cold-worked and recovered state in the temperature range from 75' to 750°F have been de

    Jan 1, 1954

  • AIME
    Institute of Metals Division - Creep Rupture Properties and Structural changes in Carbon and Low Alloy Steels

    By E. F. Ketterer, D. B. Collyer, A. B. Wilder

    The microstructural stability of 59 carbon and low alloy steels after 34,000 hr exposure at 900' and 1050°F, including the weld heat-affected zone, is discussed. The tensile and creep rupture pro

    Jan 1, 1955

  • AIME
    Institute of Metals Division - Creep-Rupture by Vacancy Condensation

    By E. S. Machlin

    The possibility that formation of voids under creep-rupture conditions may take place by the condensation of vacancies has been investigated theoretically. It has been concluded that nucleation of voi

    Jan 1, 1957

  • AIME
    Institute of Metals Division - Creep-Rupture Characteristics of Al-Mg Solid-Solution Alloys

    By N. J. Grant, A. W. Mullendore

    Three aluminum alloys of 0.94, 1.92, and 5.10 pct Mg, prepared from very high purity metals, were tested at 500°, 700°, and 900°F in creep rupture. The degree of strengthening through solid-solu-tion

    Jan 1, 1955

  • AIME
    Institute of Metals Division - Creep-Rupture Tests at 1800° and 200°F on Hyper-Pure Silicon Polycrystals (TN)

    By J. T. Brown

    AS far as could be ascertained, no one had previously investigated the creep strength of silicon poly-crystals. Literature has appeared showing evidence for plastic deformation in silicon single cryst

    Jan 1, 1960

  • AIME
    Institute of Metals Division - Critical Particle Size for Precipitation Hardening

    By J. D. Livingston

    THE hardening of alloys by the precipitation of a second phase has long been an important technological process. One approach towards improving our understanding of this phenomenon has been a correla

    Jan 1, 1960

  • AIME
    Institute of Metals Division - Cross Slip in Easy Glide

    By Walter A. Backofen, Donald H. Avery

    Intense primary and cross-slip traces were observed in easy glide on Cu: 6 pct-A1 single crystals deformed in tension. A mechanism of cooperative source operation is developed which recognizes that bo

    Jan 1, 1963

  • AIME
    Institute of Metals Division - Cross-Rolling and Annealing Textures In High-Purity Iron

    By Hsun Hu

    NOT much data are available in the literature on textures in cross-rolled metal sheets. Among the body-centered-cubic metals, a few investigators have studied the preferred orientations developed in c

    Jan 1, 1958

  • AIME
    Institute of Metals Division - Crystal Orientation in the Cylindrical X-Ray Camera

    By Robert W. Hendricks, John B. Newkirk

    A simple method is described for determining the orientation of a single crystal by means of a cylindr cal X-ray camera. Orientation setting to within ±1 deg is attainable by a stereographic analysis

    Jan 1, 1963

  • AIME
    Institute of Metals Division - Crystal Structure of Delta-Prime Plutonium And the Thermal Expansion Characteristics Of Delta, Delta-Prime, and Epsilon Plutonium

    By F. H. Ellinger

    A BRIEF description of the thermal expansion characteristics and of the four known crystal structures among the six allotropes of plutonium has been covered in a summarizing report on plu- tonium b

    Jan 1, 1957

  • AIME
    Institute of Metals Division - Crystal Structure of Saturated Mixed Hydrides of Titanium and Niobium (Columbium) (TN)

    By G. S. Upadhyaya, A. D. McQuillan

    HERE would appear to be a simple relationship between the group number in the periodic table of the early transition metals and the maximum amount of hydrogen which they can absorb.' Thus group I

    Jan 1, 1962

  • AIME
    Institute of Metals Division - Crystal Structure of TaCr2 and CbCr2

    By Howard Martens, Pol Duwez

    IN two papers published in 1949, alloys of chromium with the refractory metals tungsten, molybdenum, tantalum, and columbium were investigated in view of their possible use as high temperature resisti

    Jan 1, 1953

  • AIME
    Institute of Metals Division - Crystal Structure of Ti3Sn

    By Paul Pietrokowsky

    THE formation of intermediate phases in the solid state reaction of titanium with silicon, germanium. and tin (of subgroup 4B in the periodic table) was the subject of a recent paper.' Further in

    Jan 1, 1953

  • AIME
    Institute of Metals Division - Crystal Structure of Ti5Si3, Ti5Ge3 and Ti5Sn3

    By Pol Duwez, Paul Pietrokowsky

    The crystal structure of the compound TisGeS has been determined from X-ray powder diffraction data. Related silicon and tin compounds have been found to be isomorphous. Unit cell dimensions, axial ra

    Jan 1, 1952

  • AIME
    Institute of Metals Division - Crystal Structure of TiAl

    By J. L. Taylor, Pol Duwez

    THE present knowledge of the Ti-Al system is limited to the portion of the diagram extending from pure aluminum to the intermetallic compound TiAl3' A preliminary investigation of the titanium-ri

    Jan 1, 1953

  • AIME
    Institute of Metals Division - Crystal Structure of UAI4

    By Bernard S. Borie

    THE U-A1 binary system has been studied by Kaufmann and Gordon.' They have shown that three intermetallic compounds occur in the system: UAl², UAl², and a third compound tentatively identified as

    Jan 1, 1952

  • AIME
    Institute of Metals Division - Crystal Structure of ZrB12

    By F. W. Glaser, Benjamin Post

    A LTHOUGH most transition metals form a wide variety of boride compounds, the existence of only one zirconium boride, ZrB2, had been established prior to this investigation.' The crystal structu

    Jan 1, 1953