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Institute of Metals Division - Predendritic SolidificationBy H. Biloni, B. Chalmers
Metallographic studies of the segregation of solute in and near the surfaces of chill-cast alloys have shown that, under sufficiently severe conditions, nucleation on the cold mold surface is followed
Jan 1, 1965
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Technical Notes - Decarburization of High Carbon Cobalt MetalBy J. H. Hamilton, J. R. Lewis, J. H. Dismant, W. M. Fassell
RECENTLY this laboratory undertook the task of preparing some low carbon metallic cobalt by the carbon reduction of precipitated cobalt oxides. The oxides came in two lots and had the compositions giv
Jan 1, 1953
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Institute of Metals Division - Intermediate Phases with the MgCu, Structure (TN)By S. E. Haszko
Fused alumina or silica crucibles were used as the containing vessel. X-ray powder photographs were taken with CrKa radiation and the use of Straumanis type Norelco cameras of 114.6 mm diam. Crysta
Jan 1, 1961
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Technical Notes - The Effect of Working and Heating Eutectic StructuresBy J. S. Brown, A. G. Guy
With the exception of the work of Tammann and Hartmann,1 no published information has been found on the structural changes produced in eutectic structures as the result of heating following plastic de
Jan 1, 1950
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Institute of Metals Division - Effect of Strain Rate and Temperature on the Compression Texture of Aluminum (TN)By W. J. Rogers, L. J. Dwiggins, R. O. Williams
THERE has been comparatively little work on the importance of strain rate and temperature as variables in the formation of deformation textures. For this reason the present work was started, the choic
Jan 1, 1961
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Institute of Metals Division - Lamellar Tilt Boundary of Mg-32 Wt Pct Al EutecticBy A. S. Yue
Small-angle tilt boundaries have been observed in a lamellar eutectic structure. These boundaries are morphologically similar to a theoretical till boundary originally proposed by Burgers. The product
Jan 1, 1964
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Institute of Metals Division - Grain Growth in Dilute Alloys of CopperBy S. Weinig, E. S. Machlin
IN a previous study of the grain boundary stress relaxation phenomenon,' the authors had arrived at the conclusion that two successive steps were involved in the complete relaxation of stress at
Jan 1, 1958
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Extractive Metallurgy Division - Liquid-Solid Phase Distribution Studies in the Systems Iron-Lead, Cobalt- Lead, Chromium-Tin, and Nickel-SilverBy John Wulff, David A. Stevenson
The solubility of iron and cobalt in liquid lead, the solubility of chromium in liquid tin, and nickel in liquid silver were determined up to 1300°C in an atmosphere of hydrogen. Liquid samples were t
Jan 1, 1962
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Copper-beryllium "Bronzes"By J. Kent Smith
THE object of this investigation was to ascertain the effect of varying percentages of beryllium upon pure copper and the properties of the resultant alloys in their softest condition, the effect of h
Jan 1, 1932
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A Study of Differential FlotationBy C. R. Ince
THE term "differential flotation" is used to denote a flotation operation in which separation is effected between two or more minerals of the same class; e. g., lead sulfide from zinc sulfide, pyrite
Jan 1, 1929
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Hot Deformation Structures, Veining And Red-Shortness Cracks In Iron And SteelBy Axel Hultgren, B. Herrlander
THE original aim of the present investigation was to study the mechanism of cracking on hot-deforming red-short steels. During the microscopical examination of hot-deformed soft steels attention was d
Jan 1, 1946
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Institute of Metals Division - Further Progress in the Development of Mg-Zr Alloys to Give Good Creep and Fatigue Properties Between 500° and 650°FBy P. A. Fisher, J. B. Wilson, D. J. Whitehead, C. J. P. Ball, A. C. Jessup
The properties of a new magnesium alloy ZT1 containing 3.0 pct Th, 2.5 pct Zn, 0.7 pct Zr are described. The alloy possesses good creep and fatigue resistance up to 650°F, is free from microporosity,
Jan 1, 1954
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Papers - Flotation - Study of Differential Flotation (With Discussion)By C. R. Ince
The term "differential flotation" is used to denote a flotation operation in which separation is effected between two or more minerals of the same class; e. g., lead sulfide from zinc sulfide, pyrite
Jan 1, 1930
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Miscellaneous (1c1d0afc-5eca-43b2-a52d-61a22ffb255f)US 4,135,913-Extraction of nickel values from iron-containing nickel sulfide ore, particularly pentlandite or nickeliferous pyrrhotite A mixture of raw ore, roasted ore, or iron powder, and coal as a
Jan 1, 1980
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Oxygen Injection And Basic RoofsTWO recent developments in open hearth steelmaking have had a substantial impact on metallurgical practices and operating procedures. These are: (1) the use of oxygen roof lances for accelerating the
Jan 1, 1964
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Non-metallic Minerals - Mining and Preparation of Eastern Molding Sands (with Discussion)By R. M. Bird
Few persons outside of the foundry trade have any conception of the great variety of sands now regularly specified and furnished, nor of the differences in foundry practice frequently resulting from a
Jan 1, 1926
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Explosibility Of Coal And Other Dusts In A Laboratory Steel Dust GalleryBy V. C. Allison
The explosibility of a dust is favored by its fineness and content of volatile combustible matter; its explosibility is decreased by its moisture and ash content. The explosibility of a dust can be re
Jan 7, 1925
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Division Lectures - The 1961 Institute of Metals Lecture - The Liquid State and the Liquid-Solid TransitionBy David Turnbull
STAFF: Editor, Gerhard Derge Carnegie Institute of Technology Schenley Park Pittsburgh 13, Pa. Editorial Assistant, M. A. Redmerski Production Editor, Otto T. Johnson
Jan 1, 1962
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Mechanical Properties Of The Aluminum-Copper-Silicon Alloy As Sand Cast And As Heat TreatedBy Samuel Daniels
In this paper are given the mechanical properties, determined by the Engineering Division, Air Service, U. S. A., of the 94 per cent. aluminum, 5 per cent. copper, 1 per cent. silicon alloy as sand-ca
Jan 7, 1925
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Technical Papers and Discussions - Miscellaneous Alloys - Liquidus Determinations in Zinc-rich Alloys (Zn-Fe; Zn-Cu; Zn-Mn). (Metals Technology, June 1944) (With discussion)By Gerald Edmunds
The liquidus line on the phase diagram for temperature versus composition of a binary alloy system, representing the boundary between the homogeneous melt and the heterogeneous melt plus solid, beside
Jan 1, 1944