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Institute of Metals Division - Oxidation of the Uranium-Copper Intermetallic Compound UCu5 in Carbon Dioxide between 350° and 850°C
By R. J. Pearce, I. Whittle, J. J. Stobbs
The oxidation kinetics of UCu5 in carbon dioxide have been studied over the temperature range 350° to 850°C. At any one temperature, two successive parabolic rate constants are obtained. Up to 650°C,
Jan 1, 1965
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Institute of Metals Division - Oxidation of Three Iron-Nickel Alloys and Iron at 800°C
By S. W. Kennedy, M. Cohen, L. D. Calvert
A high-temperature X-ray diffraction method has been used to study the composition and the kinetics of formation of oxide scales at 800 °C on iron and pure iron-nickel alloys containing 25.6, 75, and
Jan 1, 1960
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Institute of Metals Division - Oxidation of Tin (TN)
By Charles Luner
ALTHOUGH the kinetics of the atmospheric oxidation of tin have been studied,1-3 the kinetics in pure oxygen have not been reported. This note presents some results of the kinetics of the oxidation of
Jan 1, 1961
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Institute of Metals Division - Oxidation of Titanium
By C. E. Birchenall, M. H. Davis
The rate of oxidation of titanium in the temperature range 650° to 950°C has been measured. 'The linear rate law obtained is explained by interface reaction control of the process. Tracer experim
Jan 1, 1952
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Institute of Metals Division - Oxidation of Zirconium Between 400" and 800°C
By Earl A. Gulbransen, Kenneth F. Andrew
DRY oxidation of zirconium has been studied by several groups.'" The present work extends our early study1 to the high-temperature studies of Cubicciotti2 and Belle and Mallett.8 ulbransen and
Jan 1, 1958
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Institute of Metals Division - Oxidation-Nitrification of Chromium at 1000°C
By A. U. Seybolt, D. H. Haman
The rate of oxidation of the lowest nitride of chromium, Cr2N, was measured to be equal to the rate of oxidation of chromium metal. It was found that, while the presence of Cr2N in chromium does not a
Jan 1, 1964
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Institute of Metals Division - Oxide Bonding and the Creep-Rupture Strength of Nickel
By T. R. Cass, M. R. Achter
A technique for measuring the creep and rupture strength of nickel specimens bonded by sintered oxide layers has been developed for the investigation of the role of grain-boundary oxide in the oxidati
Jan 1, 1962
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Institute of Metals Division - P-type and N-type Silicon and the Formation of the Photovoltaic Barrier in Silicon Ingot
By J. H. Scaff, H. C. Theurer, E. E. Schumacher
The microwave region of the radio spectrum was effectively utilized in radar designs during the recent war and it has become of increasing interest in the field of communications. Work in this field h
Jan 1, 1950
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Institute of Metals Division - Partial Titanium-Vanadium Phase Diagram
By Pol Duwez, Paul Pietrokowsky
Titanium and vanadium form a complete series of solid solutions at temperatures above 885°C. Below 885°C, vanadium is slightly soluble in a titanium (about 1.5 pct V at 650°C) and a two-phase a plus ß
Jan 1, 1953
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Institute of Metals Division - Particle Coarsening in a Copper-Silica Alloy
By Nicholas J. Grant, Noboru Komatsu
Electron-micrographic studies and hardness tests were made of an internally oxidized dispersion-strengthened Cu-12 vol pct SiO2 alloy follozuing longtime annealing at elevated temperatures. The rate o
Jan 1, 1964
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Institute of Metals Division - Penetration of Liquid Bismuth into the Grain Boundaries of a Nickel Alloy
By C. W. Spencer, F. G. Hochgraf, R. F. Cheney
Columnar grained specimens of nickel, containing 0.25 pct Si and 0.22 pct Mn, have been exposed to liquid bismuth in the temperature range 670° to 1050°C. Under isothermal conditions the liquid penet
Jan 1, 1962
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Institute of Metals Division - Perisectic Reaction in the Superconductor Nb3Sn (Cb3Sn)
By Harry C. Gatos, Frank J. Bachner, Mario D. Banus
The portion of the Nb-Sn phase diagram between 75 and 79 at. pct Nb at temperatures near the liquidus has been investigated by melting alloys of known composition and examining the microstmc-tzlres re
Jan 1, 1965
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Institute of Metals Division - Permeability and Diffusion of Hydrogen Through Palladium
By M. van Swaay, C. E. Birchenall
Palladium has a large capacity for the dissolution or occlusion of hydrogen; the gas also diffuses very rapidly through the metal. Palladium thimbles are widely used in the laboratory for purification
Jan 1, 1961
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Institute of Metals Division - Petch Relation and Grain Boundary Sources
By James C. M. Li
The Petch relation between the flow stress and the gain size is derived from a consideration of gain boundary sources of dislocations without the need of dislocation Pile-ups. Three mechanisms for in
Jan 1, 1963
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Institute of Metals Division - Phase Changes in Precipitation Hardening Nickel-Chromium-Iron Alloys during Prolonged Heating
By C. C. Clark, J. S. Iwanski
The purpose of this investigation was to study mi-crostructural changes that take place in a commercial nickel-chromium-iron alloy, such as Incoloy "901," over long periods of time at temperatures up
Jan 1, 1960
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Institute of Metals Division - Phase Diagram and Thermodynamic Properties of the Thorium-Zinc System
By K. J. Gill, P. Chiotti
Thermal, metallographic, and vapor pressure data were obtained to establish the phase diagram for the thorium-zinc system. Four compounds corresponding to the stoichiometric formulas Th2Zn, ThZn2, ThZ
Jan 1, 1962
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Institute of Metals Division - Phase Diagram and Thermodynamic Properties of the Yttrium-Zinc System
By K. J. Gill, P. Chiotti, J. T. Mason
Thermal, metallographic, and vapor pressure data were obtained to establish the pkase boundaries and the standard free energy, enthalpy, and entropy of formation for the compounds in the Y-Zn system.
Jan 1, 1963
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Institute of Metals Division - Phase Equilibria and Elevated-Temperature Properties of Some Alloys in the System Ni3Cr-Ni3Al
By C. H. Li, R. J. Stokes, T. L. Johnston
A portion of the Ni3Cr-Ni3Al phase dzagram has been investigated, including the precipitation of 1 (Ni3Al) as well as the existence of ordered Y (Ni matrix), Extensive metallographic studies by electr
Jan 1, 1962
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Institute of Metals Division - Phase Equilibria in Yttrium-Rich Ternary Alloys Containing Aluminum and Carbon
By P. G. Sprang, S. Rosen
The Y-Al- C ternary phase diagram for the com -position range from 55 to 100 at. pct Y and for a temperature of 950°C has been constructed from metallographic and X-ray diffraction data. The significa
Jan 1, 1965
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Institute of Metals Division - Phase Equilibria of the Group IVA Metals with Yttrium
By C. E. Lundin, D. T. Klodt
The binary alloy systems, Y-Ti, Y-Zr, and Y-Hf, have been investigated throughout their entire composition regions. There is no compound formation in any of the systems, and each system is characteriz
Jan 1, 1962