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Institute of Metals Division - Compositional Control of Phases Precipitating in Complex Austenitic AlloysBy W. C. Hagel, H. J. Beattie
Phases present at 2200° and 1500°F (1204° and 816°C) were identified in sixty wrought developmental austenitic alloys possessing wide compositional variations. The bases were iron-, cobalt-, and nicke
Jan 1, 1965
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Institute of Metals Division - Compressibility of Mercury AlloysBy G. Abowitz, R. B. Gordon
The velocity of sound, mass density, and thermal expansion coefficient were measured in dilute lead, tin, zinc, bismuth, cadmium, indium, and potassium amalgams as a function of composition. Measureme
Jan 1, 1963
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Institute of Metals Division - Compression Testing of Fcc CrystalsBy B. Ramaswami, Y. Nakada, U. F. Kocks
Compression tests were performed on single crystals of aluminum, silver, gold, and a Ag-10 pet Au alloy, with height-to-width ratios from 8:1 to 1:1. As this ratio decreased, so did the amount of easy
Jan 1, 1964
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Institute of Metals Division - Compression Texture of Iodide TitaniumBy D. S. Eppelsheimer, D. N. Williams
The compression texture of iodide titanium is determined and found to consist of a [0001] texture rotated 15° to 30° from the axis of compression. As the amount of reduction increases, the angle of
Jan 1, 1953
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Institute of Metals Division - Computer Program for the Analysis of Quantitative Metallography Data for Second Phase Particle Size Distributions by the DeHoff Method (TN)By J. Buchwald, R. W. Heckel
THE DeHoff method' of analysis of ellipsoids of constant shape provides a quantitative metallo-graphic technique whereby the actual size distribution of the ellipsoids may be determined from poli
Jan 1, 1965
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Institute of Metals Division - Concentration Dependence of Diffusion Coefficients in Metallic Solid SolutionBy D. E. Thomas, C. E. Birchenall
ALTHOUGH Eoltzmann gave a mathematical solution for the diffusion equation (for planar diffusion in infinite 01. semi-infinite systems only) in 1894 allowing for variation of the diffusion coefficient
Jan 1, 1953
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Institute of Metals Division - Concerning the Determination of Intrinsic Diffusion Coefficients in Binary Systems with Variable Molal Volume (TN)By G. W. Powell
ACCORDING to crank,' the accumulation equations for inter diffusion in a binary system whose molal volume is a function of concentration are
Jan 1, 1965
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Institute of Metals Division - Condensed-Phase Relations in the System Mo-O (TN)By Luke L. Y. Chang, Bert Phillips
A number of molybdenum oxides have been synthesized and their crystal structures have been described.' No data have been published on the stabilities of these oxides nor on the phase relations in
Jan 1, 1965
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Institute of Metals Division - Constant Strain Rate Bend Tests on Hydrogen-Embrittled High Strength SteelsBy G. Sachs, E. P. Klier, W. Beck
HYDROGEN embrittlement of steels has recently attracted much attention because it is asso- ciated with a variety of failures, especially those of aircraft structural components.' For instance,
Jan 1, 1957
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Institute of Metals Division - Constitution and Mechanical Properties of Titanium-Hydrogen Alloys (Correction page 644)By R. I. Jaffee, C. M. Craighead, G. A. Lenning
Hydrogen forms a beta-stabilized system with titanium, with a beta eutectoid at about 300°C and 44 atomic pct H2. 'The solid solubility of hydrogen in alpha decreases from about 8 to about 0.1 at
Jan 1, 1955
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Institute of Metals Division - Constitution and Precipitation-Hardening Properties of Copper-Rich Copper-Tin-Beryllium AlloysBy J. W. Cuthbertson, R. A. Cresswell
THE constitution of Cu-rich alloys with 1.5 to 13.5 pct Sn and 0.25 to 3.0 pct Be and the precipitation-hardening characteristics of alloys with 1.5 to 13.5 pct Sn and 0.25 to 1.0 pct Be have been exa
Jan 1, 1952
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Institute of Metals Division - Constitution and Properties of Ag-Cu-Zn Brazing Alloys (Discussion page 1325)By K. M. Weigert
The position of the three-phase field between the alpha and the beta phases was established. The exact location differs from previous assumptions. The extremely high strength and hardness values were
Jan 1, 1955
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Institute of Metals Division - Constitution and Properties of Some Iron-Bearing Cupro-NickelsBy F. H. Wilson, E. W. Palmer
The solid solubility of iron in 2 to 10 pct cupro-nickels increases with temperature and nickel content. Property changes accompanying various heat treatments indicate typical precipitation hardening
Jan 1, 1953
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Institute of Metals Division - Constitution and Properties of Some Iron-Bearing Cupro-Nickels - DiscussionBy F. H. Wilson, E. W. Palmer
G. L. Bailey (British Non-Ferrous Metals Research Association, London, England)—I was glad to see this further work on the structure and properties of the Cu-Ni-Fe alloys of low nickel content in whic
Jan 1, 1953
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Institute of Metals Division - Constitution of Delta-Phase Alloys of the System U-Zr-TiBy A. A. Bauer, H. A. Saller, F. A. Rough, J. R. Doig
among uranium alloy systems are the U-Zr, U-Ti,and U-Mo binary systems, in that an intermediate phase, of limited solubility range, exists in each system. These intermediate phase alloys offer a
Jan 1, 1958
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Institute of Metals Division - Constitution of Fe C Mo Alloys Containing 0.05 - 1.3 pct C and 0.03 - 6.0 pct MoBy L. W. Reynolds, R. F. Campbell, K. G. Carroll, S. H. Ballard
Based on metallographic and X-ray data probable equilibrium conditions from 1340" to 2400°F are presented for the composition range investigated. These are correlated with investigations of Takei an
Jan 1, 1961
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Institute of Metals Division - Constitution of Iron-Boron Alloys in the Low Boron RangeBy M. E. Nicholson
The solid solubility of boron in iron has been determined by saturating iron with respect to FeyB at several temperatures from 870° to 1135 C. In alpha iron the maximum solubility was found to be 0.00
Jan 1, 1955
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Institute of Metals Division - Constitution of Iron-Chromium-Molybdenum Alloys at 1200°FBy Pol Duwez, Spencer R. Baen
A LTHOUGH the practical importance of Fe-Cr--iV Mo alloys has long been recognized, constitution studies have been limited to a few alloys within rather narrow ranges of composition. The purpose of th
Jan 1, 1952
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Institute of Metals Division - Constitution of Nickel-Rich Quaternary Alloys of the Ni-Cr-Ti-Al SystemBy A. Taylor
NICKEL-RICH alloys hardened with small additions of titanium and aluminum and centered around that region of face-centered-cubic primary solid solution, 7, where the atomic ratio of nickel chromium is
Jan 1, 1957
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Institute of Metals Division - Constitution of Nickel-Rich Quinary Alloys in the System Ni-Fe-Cr-Ti-Al.By A. Taylor
IN a previous communication,l the quaternary system Ni-Cr-Ti-A1 was described in detail and it was shown how certain alloys used for high-temperature applications could be construed as consisting of N
Jan 1, 1958