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Institute of Metals Division - Transitions in Chromium - DiscussionBy W. C. Ellis, E. S. Greiner, M. E. Fine
C. H. Samans and W. R. Ham (Chicago, Ill., and Dix-field, Maine, respectively)-—For several years we have been studying transitions of this basic type in metals, alloys, glasses, etc. Usually, however
Jan 1, 1952
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Institute of Metals Division - Transmission Electron Microscopy of Cold-Worked and Re-crystallized Alpha UraniumBy S. E. Bronisz, Dana L. Douglass
a Uranium was deformed by cold rolling, and the effects of this plustic deformation on the microstruc-ture of the metal were observed by the technique of transmission elecbon microscopy. The recrystal
Jan 1, 1963
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Institute of Metals Division - Transmission Quantitative MetallographyBy J. Nutting, J. W. Cahn
WITH the development of thin film techniques for the direct examination of metals in the electron microscope some new problems in quantitative metallography have become apparent. In order to obta
Jan 1, 1960
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Institute of Metals Division - Tungsten Oxidation Kinetics at High TemperaturesBy R. W. Bartlett
The rates of oxidation of tungsten have been determined at temperatures between 1320" and 3170°C and oxygen pressures to 1 amn using a surface -recession measurement technique. Above approximately 200
Jan 1, 1964
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Institute of Metals Division - Tungsten Sheet Alloys with Improved Low-Temperature DuctilityBy J. L. Ratliff, R. I. Jaffee, H. R. Ogden, D. J. Maykuth
An experimental program was carried out to improve the low-temperature ductjlity of tungsten through the combined use of dispersed oxides for grain-size control and Groups VII and VIII metal additions
Jan 1, 1964
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Institute of Metals Division - Tungsten-Cobalt-Carbon SystemBy J. T. Norton, Pekka Rautala
The phases and equilibria in the W-Co-C system have been studied by X-ray diffraction methods, metallographic technique, and thermal analysis. In addition to the 7 phase, two double carbides, called 8
Jan 1, 1953
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Institute of Metals Division - Twin Accommodation in Au- Cd B' Alloys (TN)By H. K. Birnbaum
The termination of a twin lamella in the interior of a crystal requires accommodation of the strains at the tip of the twin which result from coherency of the twin and matrix. In zinc and magnesium cr
Jan 1, 1960
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Institute of Metals Division - Twin Intersections and Cahn's Continuity ConditionsBy R. E. Reed-Hill
The shear continuity conditions under which one mechanical twin may cross another are considered. Twin intersections usually involve various types of slip deformation in addition to twinning. Because
Jan 1, 1964
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Institute of Metals Division - Twinning and Fracture in Tungsten Single Crystals at Room TemperatureBy Ursula E. Wolff
Il.lechanica1 twins have been observed in brigsten single crystals of a variety of axial orientations defornzed at room temperature in tension or bending. The twins formed near the final fracture and
Jan 1, 1962
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Institute of Metals Division - Twinning in Columbium -Vanadium AlloysBy D. O. Hobson, J. O. Stiegler, C. J. McHargue
The effects of alloy composition, deformation temperature, heal treatment, ad inlerstilial contamination on the occurrence of deformation twins were studied. The twinning transition temperature varied
Jan 1, 1965
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Institute of Metals Division - Two Types of Discontinuous Precipitation in Alpha Iron Solid SolutionsBy E. Hornbogen
Discontinuous precipitation in a iron can occur by at least two different mechanisms. These mechanisms are compared, using observations made on an Fe-22 at. pct Zn alloy and an Fe-19.5 at. pct Mo all
Jan 1, 1963
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Institute of Metals Division - Undercooling of Minor Liquid Phases in Binary AlloysBy C. S. Smith, Chih-Chung Wang
TURNBULL and his collaborators1,2 have developed the theory of homogeneous nucleation as applied, inter alia, to solidification of liquid metals. Vonnegut³ and Turnbull4 have shown that if a liquid me
Jan 1, 1951
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Institute of Metals Division - Uranium-Chromium SystemBy A. H. Daane, A. S. Wilson
The U-Cr system is of the simple eutectic type with some solid solubility of chromium in r and ß uranium. The eutectic occurs at 20 atomic pet Cr and melts at 859°C. The maximum solubility of chromium
Jan 1, 1956
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Institute of Metals Division - Uranium-Silicon AlloysBy A. Kaufmann, B. Cullity, G. Bitsianes
T0 determine the bulk of the phase diagram, techniques for melting, thermal analysis, heat treatment, metallography, and X-ray diffraction that have already been described were used.' It proved d
Jan 1, 1958
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Institute of Metals Division - Uranium-Titanium Alloy System (Discussion page 1317)By M. C. Udy, F. W. Boulger
AN incomplete phase diagram for the U-Ti systern was determined earlier 1 and more recently, a tentative diagram was presented for the uranium-rich end of the system.' In the present re-examinati
Jan 1, 1955
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Institute of Metals Division - Uranium-Zinc SystemBy H. H. Klepfer, K. J. Gill, P. Chiotti
SOME observations relative to the U-Zn system have been made by other investigators. Chipman1 and Carter2 have reported the preparation of several U-Zn alloys and point out that these alloys are gener
Jan 1, 1958
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Institute of Metals Division - Use of Axis Distribution Charts to Represent Sheet TexturesBy L. K. Jetter, C. J. McHargue
The use of axis charts for representing the texture of cold-rolled thorium sheet was compared with conventional pole figures. Four texture components were deduced from the axis charts and shown to be
Jan 1, 1961
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Institute of Metals Division - Use of Vanadium Nitride Inclusions for the Development of Cube-on-Edge Texture in 3 pct. Si-FrBy H. C. Fiedler
A high degree of cuhe-on-edge grain orientation and good magnetic properties were obtained in Si-Fe strip processed from laboratory heats containing vanadium nitride inclusions. The higher the nitroge
Jan 1, 1962
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Institute of Metals Division - Vanadium-Zirconium Alloy System (Discussion p. 1266)By J. T. Williams
The equilibria in the V-Zr alloy system were investigated by solidus temperature determinations, thermal analysis, dilatometry, electrical resistance measurements, microscopic examination, and X-ray d
Jan 1, 1956
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Institute of Metals Division - Vapor Pressure of Liquid Copper And Activities In Liquid Fe-Cu AlloysBy Glenn R. Zellars, J. P. Morris
The carrier gas method was used to measure the vapor pressure of copper over liquid copper and Fe-Cu alloys. From these results, the activity of copper in the alloys was determined at 146°, 1550°, and
Jan 1, 1957