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Institute of Metals Division - Ternary Cr3O-Type Phases with VanadiumBy J. W. Downey, S. T. Zegler
A study has been made of the occurrence of Phases having the Cr30-type structure in ternary alloys having the general composition where B cept for iron and copper all the B components are known to fo
Jan 1, 1963
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Institute of Metals Division - Tertiary Recrystallization in Silicon IronBy C. G. Dunn, J. L. Walter
SILICON-iron .under certain conditions of processing and annealing will form a cube texture. The occurrence of this texture in thin tapes of silicon iron was first reported by Assmus, Detert, and Ibe.
Jan 1, 1960
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Institute of Metals Division - The Action of Molten Uranium on Graphite (TN)By E. L. Swarts
In the course of a program on high-temperature processing and electrowinning of uranium at the Knolls Atomic Power Laboratory,'' it became necessary to give attention to the interaction o
Jan 1, 1960
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Institute of Metals Division - The Activation Energy of Snoek Relaxations in Bcc Metals (TN)By E. T. Stephenson
Wert and Marx1 pointed out that a straight-line relationship exists between the activation energy of a relaxation process and the temperature at which the maximum relaxation occurs. The data available
Jan 1, 1965
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Institute of Metals Division - The Activity of Carbon in Iron-Cobalt Alloys at 1000°CBy R. P. Smith
The carbon content of a number of alloys ranging (before carburitation) from purified iron to purified cobalt was determined for fixed activities of carbon by equilibration with each of six CO-CO2 atm
Jan 1, 1965
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Institute of Metals Division - The Activity of Carbon in Iron-Nickel-Carbon AusteniteBy P. G. Winchell, A. J. Heckler
An experimentally simple method for determining the effect of alloying elements on the activity of carbon is validated in Fe-Ni-C austenite. The technique consists of the equilibration of carbon betwe
Jan 1, 1963
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Institute of Metals Division - The Agglomeration of Hydrogen in AluminumBy W. Evans, C. E. Ells
The agglomeration of hydrogen in pure aluminum and A1-Mg alloys has been studied through use of hydrogen introduced into the metal by cyclotron proton irradiation. Both the growth and dispersal of t
Jan 1, 1963
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Institute of Metals Division - The Alloy Systems Uranium-Aluminum and Uranium-IronBy A. R. Kaufman, P. Gordon
THE large-scale manufacture and use of uranium in conjunction with the atomic energy development during the war led to a need for knowing the equilibrium diagrams of uranium with various other metals.
Jan 1, 1951
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Institute of Metals Division - The Alloy Systems Uranium-Tungsten, Uranium-Tantalum and Tungsten-TantalumBy A. R. Kaufman, P. Gordon, C. H. Schramm
AS a part of the general program on alloys of uranium carried out at the Massachusetts Institute of Technology under contract W-7405-eng-175 for the Manhattan Project during the recent war, it was con
Jan 1, 1951
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Institute of Metals Division - The Anomaly in the Rate of Strain Hardening of Zinc Single Crystals (TN)By A. E. Deruyttere, J. Van der Planken, M. Laurent, Van den Bergen
FahRENHORST and schmid1 observed that zinc single crystals work hardened less rapidly when strained in liquid air (- 185°C)than in a bath at -82°C, whereas at higher temperatures the rate of work hard
Jan 1, 1962
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Institute of Metals Division - The Applicability of AISI C- 1213 Free-Machining .Steel to Complex Fatigue- Shock- Wear LoadBy G. Koves
The behavior of case-hardened AISI C-1213 free -machining steel under complex impact-fatigue -wear load conditions was investigated. The inherently poor dynamic properties of the steel are mainly affe
Jan 1, 1964
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Institute of Metals Division - The Application of Ultrasonic Energy to Ingot Solidification. I.By J. W. Cunningham, W. A. Tiller, D. H. Lane
The effect of ultrasonic vibrations on ingot solidification has been considered both theoretically and experimentally. The theoretical section elucidates the mechanisms by which the ultrasonic vibrati
Jan 1, 1961
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Institute of Metals Division - The Application of Ultrasonic Energy to Ingot Solidification. II.By W. A. Tiller, D. H. Lane
A simple zone melting technique for investigating the effect of ultrasonic irradiation upon ingot solidification is described. The effect of i) ultrasonic power level, ii) freezing velocity, iii) cons
Jan 1, 1961
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Institute of Metals Division - The Association of Hcp and Bcc Structures in the Martensite Transformation (TN)By W. D. Robertson, D. A. Koss, A. J. Goldman
THE significance of the hcp (E) structure, which appears when Fe-Cr-Ni alloys (stainless steels) are transformed martensitically, has been the subject of considerable study and speculation.'-7 It
Jan 1, 1964
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Institute of Metals Division - The Austenite Solidus and Revised Iron-Carbon DiagramBy M. G. Benz, J. F. Elliott
The austenite solidus of the iron-carbon system has been determined using a series of diffusion couples, each of which consisted of a specimen of austenite held in contact with a melt saturated with a
Jan 1, 1962
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Institute of Metals Division - The Bauschinger Effect in Torsionally-Prestrained Strain-Aged Superstrength SteelsBy J. Tarwater
The torsional testing of cylindrical medium-carbon steel specimens, heat treated to a high strength level, revealed a stress-strain relationship that was dependent on the direction of torsional plasti
Jan 1, 1963
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Institute of Metals Division - The Behavior of Composite Silver-Alumina Alloys above the Melting Point of SilverBy H. R. Peiffer
Composite alloys of silver and alumina are shown to resist flow above the melting point of the continuous matrix. The ability to resist flow depends on the fineness of the dispersion and the oxygen
Jan 1, 1961
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Institute of Metals Division - The Behavior of Iron-Silicon Alloys Under Impulsive LoadingBy J. Rourke, F. S. Minshall, E. G. Zukas, C. M. Fowler, O&apos
The Hugoniot curves were determined for Fe-Si alloys containing up to 7 wt pct (13 at. pct) Si. The pressure of the transition increased as the silicon content of the alloy increased. Single crystals
Jan 1, 1963
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Institute of Metals Division - The Beryllium-iron SystemBy M. Cohen, R. J. Teitel
There is considerable interest in beryllium because of its low density (1.84 g per cu cm), high modulus of elasticity (40 X 106 psi), high melting point (1280°C), and special nuclear characteristics.
Jan 1, 1950
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Institute of Metals Division - The Cadmium-Uranium Phase DiagramBy Allan E. Martin, Harold M. Feder, Irving Johnson
The cadmium-uranium system was studied by thermal, metallographic, X-7-ay and sampling techniques; special emphasis was placed on the establishment of the liquidus lines, The single inter metallic pha
Jan 1, 1962