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  • AIME
    Institute of Metals Division - Thermodynamic Properties and Lattice Parameters of Hafnium-Oxygen Alloys

    By P. A. Farrar, M. D. Silver, K. L. Komarek

    Thermodynamic properties of Hf-0 alloys have been determined from 0 to 25 at. pct 0 between 1000" and 1200°K by equilibrating specimens with alkaline metal oxide-metal vapor combinations. Partial mola

    Jan 1, 1963

  • AIME
    Institute of Metals Division - Thermodynamic Properties of Solid Fe-Au Alloys

    By L. L. Seigle

    Free energies, heats, and entropies of mixing of solid Fe-Au alloys have been measured by the galvanic cell method between 800° and 900°C. A positive deviation from Raoult's law and a large exces

    Jan 1, 1957

  • AIME
    Institute of Metals Division - Thermodynamic Properties of Solid Iron-Aluminum Alloys

    By J. Eldridge, K. L. Komarek

    Activities of aluminum in solid Fe-Al alloys have been determined between 0 and 75 at, pct Al and 1100" and 1400°K by an isopiestic method in which iron specimens, heated in a temperature gradient, ar

    Jan 1, 1964

  • AIME
    Institute of Metals Division - Thermodynamic Properties of solid Nickel-Gold Alloys

    By B. L. Averbach, Morris Cohen, L. L. Seigle

    Free energies, enthalpies, and entropies of mixing of Ni-Au solid solutions containing 5 to 95 atomic pct Ni have been determined by the electromotive force method at 700° to 900°C. The thermodynamic

    Jan 1, 1953

  • AIME
    Institute of Metals Division - Thermodynamic Properties of Solid Vanadium-Chromium Alloys

    By A. T. Aldred, K. M. Myles

    The vapor pressure of chromium over solid V-Cr alloys has been measured by the torsion-effusion method in the temperature range 1450" to 1650°K. The chemical activities as well as the free energies, e

    Jan 1, 1964

  • AIME
    Institute of Metals Division - Thermodynamic Properties of the Silver - Silicon System

    By John P. Huger

    me phase diagram for the system Ag-Si has been established by thermal analysis. The diagram is a simple eutectic type with a eutectic at 3.0 pct Si and 840°C. From the liquidus curve and with the aid

    Jan 1, 1963

  • AIME
    Institute of Metals Division - Thermodynamic Properties of Titanium-Oxygen-Hydrogen Alloys

    By M. T. Hepworth, R. Schuhmann

    Hydrogen solubility measurements were made on a series of Ti-O alloys, and a portion of the 800°C isotherm for the Ti-O-H system was determined. Activities of oxygen and titanium were calculated from

    Jan 1, 1962

  • AIME
    Institute of Metals Division - Thermodynamic Treatment of Disproportionation Equilibria Involving Complex Ion Formation in Molten Salts

    By J. M. Toguri, K. Grjotheim

    It is known 1,2 that the equilibrium between titanium metal, TiCl2 , and TiCl3, in a solvent of molten metal chlorides, is influenced both by the total amount of dissolved titanium and by the type of

    Jan 1, 1960

  • AIME
    Institute of Metals Division - Thermodynamics of Dislocation Mobility and the Third-Law Analysis of the Activation Process

    By James C. M. Li

    The thermodynamics of the set of functions including the activation enthalpy. the activation free energy, and the activation entropy for the motion of dislocations at low temperatures is formulated wi

    Jan 1, 1965

  • AIME
    Institute of Metals Division - Thermodynamics of Interstitial Solid Solutions with Repulsive Solute-Solute Interactions

    By Kenneth A. Moon

    An exact statistical treatment of a one-dimensional model is used as a basis for evoluating the reliability of certain simplified expressions for the activity of the solute in interstitial solutions,

    Jan 1, 1963

  • AIME
    Institute of Metals Division - Thermodynamics of the Primary Solid Solution of Tin in Antimony

    By C. Ernest Birchenall, Gerd M. Rosenblatt

    The pressure and molecular weight of the antimony vapor over solid solutions of tin in antimony, containing 97.4, 94.9, 93.0, and 90.7 at. pct Sb, have been measured from 445° to 545°C by the torsion-

    Jan 1, 1962

  • AIME
    Institute of Metals Division - Thermodynamics of Transition Metal Alloys: Groups IV, V, and VI Elements

    By Michael Hoch

    The phase diagrams of binary systems of some of the transition elements of Groups IV, V, and VI were used to compute the partial free energies of these elements and the free energy of formation of the

    Jan 1, 1962

  • AIME
    Institute of Metals Division - Thermoelastic and Burst-Type Martensites in Copper- Zinc Beta-Phase Alloys

    By T. B. Massalski, Horace Pops

    The occurrence and the temperature dependence of the athermal martensitic transformation in bcc Cu-Zn ß-phase alloys have been studied by cold-state microscopy, differential thermal analysis, and elec

    Jan 1, 1964

  • AIME
    Institute of Metals Division - Thermomechanical Treatments of the 18 Pct Ni Maraging Steels

    By Charles F. Hickey, Eric B. Kula

    Thermomechanical treatments applied to the maraging steels include a) cold working in the austenitic condition at 650°F, followed by transformation to martensite and aging, b) cold working in the murt

    Jan 1, 1964

  • AIME
    Institute of Metals Division - Thorium-Columbium and Thorium-Titanium Alloy Systems

    By O. N. Carlson, H. A. Wilhelm, H. E. Lunt, J. M. Dickinson

    On the basis of data obtained from microscopic examination, melting observations, cooling curves, X-ray analyses, and resistance measurements, phase diagrams have been proposed for the Th-Cb and Th-Ti

    Jan 1, 1957

  • AIME
    Institute of Metals Division - Three Dimensional Aspects of Dislocations and Substructures in Bulk Zinc Crystals

    By G. S. Tint, M. Herman, V. V. Damiano

    Dislocation arrays and substructures were studied in cadmium doped zinc crystals using a newly devised etching technique. Cadmium precipitates delineating the dislocations were revealed by etching a s

    Jan 1, 1963

  • AIME
    Institute of Metals Division - Ti-36 Pct Al as a Base for High Temperature Alloys

    By H. D. Kessler, Joseph B. McAndrew

    WHEN there is occasion to make structural use of metals at temperatures above 900°C (1652°F), the choice of alloys is severely limited, and those materials which meet special requirements as to densit

    Jan 1, 1957

  • AIME
    Institute of Metals Division - Time Temperature-Transformation Characteristics of Titanium-Molybdenum Alloys

    By D. J. DeLazaro, W. Rostoker, R. E. Riley, M. Hansen

    KNOWLEDGE of the isothermal transformation behavior and the TTT chart method of graphically summarizing such information has been of invaluable aid to the ferrous metallurgist in understanding and dev

    Jan 1, 1953

  • AIME
    Institute of Metals Division - Titanium Binary Alloys

    By O. W. Simmons, L. W. Eastwood, C. M. Craighead

    Binary alloys of titanium with silver, lead, tin, nickel, copper, beryllium, boron, silicon, chromium, molybdenum, manganese, vanadium, iron, and cobalt were studied. One-half-pound ingots of the allo

    Jan 1, 1951

  • AIME
    Institute of Metals Division - Titanium Binary Alloys - Discussion

    By O. W. Simmons, L. W. Eastwood, C. M. Craighead

    H. Schwartzbart and W. F. Brown, Jr.—The authors have divided the effects of recovery on the true stress-true strain curve into two types; metarecovery, which effects only the first part of the curve

    Jan 1, 1951