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Institute of Metals Division - Ordering Reaction in Cobalt-Platinum Alloys
By J. B. Newkirk, D. L. Martin, A. H. Geisler, R. Smoluchowski
A FUNDAMENTAL investigation of the mecha-nism of the ordering reaction and of the accompanying changes in properties has been undertaken, since an extensive study of this process could well contribute
Jan 1, 1951
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Institute of Metals Division - Ordering Reaction of the Cu4Pd Alloy
By J. B. Newkirk, A. H. Geisler
The alloy Cu4Pd has a disordered face-centered-cubic structure when quenched from temperatures between 478ºC and the melting point (about 1100°C). Below 478ºC an ordered phase is stable. The results o
Jan 1, 1955
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Institute of Metals Division - Orientation Dependence of the Surface Free Energy on Silver by a New Method
By P. G. Shewmon, F. R. Winslow
An experimental method is describedfor Ihe determination of the derivative of the surface free energy (y,) with surface orientation using symmetric bicrystals. The method measures the equilibrium ro
Jan 1, 1963
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Institute of Metals Division - Orientation Effects in the Deformation of Molybdenum Crystals (TN)
By F. R. Brotzen, D. L. Davidson
ALTHOUGH much effort has been devoted to the problem, the nature of plastic flow in bcc metals is still not fully understood. Some of the difficulties encountered stem from the scarcity of information
Jan 1, 1965
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Institute of Metals Division - Orientation of Cast Beryllium (TN)
By A. G. Metcalfe, R. P. Elliott, F. A. Crossley
THE texture method (utilizing monochromatic copper radiation) was applied to determine the orientation of the columnar grains of two vacuum cast beryllium ingots of 3 in. diam. Samples were mounted in
Jan 1, 1962
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Institute of Metals Division - Orientation of Grains Growing into Strained Single Crystals of a Cu-1.0 At. Pct P Alloy
By Y. C. Liu
The orientation relationship between the dejormation and recrystallization textztres of binary Cu-P alloys of high phosphorus content was observed to he a ± 14-deg (110) rotation. According to the ori
Jan 1, 1964
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Institute of Metals Division - Orientation Relationships in Cast Germanium
By J. Fageant, W. C. Ellis
All major regions in a progressively solidified germanium ingot were related through successive orders of octahedral twinning. The occurrence of lineage structure and the generation and survival of or
Jan 1, 1955
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Institute of Metals Division - Orientation Relationships in the Heterogenous Nucleation of Solid Lead from Liquid Lead
By L. F. Mondolfo, B. E. Sundquist
The crystallographic orientation relationships resulting when lead is nucleated from the liquid by Ni, Cu, Ag, and Ge were determined. For each nucleating agent several definite orientatioz relationsh
Jan 1, 1962
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Institute of Metals Division - Orientation Relationships in the Recrystallization of Deformed Copper Single Crystals
By J. N. Hobstetter, J. J. Becker
Deformed copper single crystals exhibited, upon annealing, a recrystallized twinned grain with a twin plane parallel to an active deformation plane, rotated approximately 22" about its pole, or else d
Jan 1, 1954
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Institute of Metals Division - Orientation Sensitivity of Alpha Titanium to Electrostaining
By R. H. Hiltz, R. W. Douglass
Large-grain specimens of iodide titanium prepared metal-lographically were stain etched using the technique of New York University as modified by Watertown Arsenal Laboratories. Orientations of grain
Jan 1, 1960
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Institute of Metals Division - Orientations of Large Grains in Tungsten Wire (TN)
By A. J. Opinsky, J. L. Orehotsky, L. L. Seigle
TUNGSTEN incandescent lamp filaments possess a typical structure of elongated crystals generated upon heating the silica-alumina doped wire rapidly to 2200°C or above.' It is known that these ver
Jan 1, 1962
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Institute of Metals Division - Oriented Arrangements of Thin Aluminum Films on Ionic Substrates
By T. N. Rhodin
There can be two types of films on solids, those which are stable in mono-layers and those which tend to aggregate into three dimensional structures. A great number of metal films formed by condensati
Jan 1, 1950
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Institute of Metals Division - Origin of Porosity in Castings of Magnesium-Aluminum and Other Alloys
By E. J. Whittenberger, F. N. Rhines
The formation of casting porosity is viewed as a nucleation and growth process with solidification shrinkage and gas precipitation as cooperative driving forces. Experimental evidence evaluating the i
Jan 1, 1953
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Institute of Metals Division - Oxidation Kinetics of Tantalum in Carbon Dioxide
By M. E. Wadsworth, K. J. Richards
The oxidation rates of tantalum in various partial pressures of carbon dioxide in the temperature range 700°to 950°C were measured with a thermo-gravimetric balance. Oxidation involved a surface -cont
Jan 1, 1964
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Institute of Metals Division - Oxidation of Cobalt Metal
By R. E. Carter, C. Wagner, F. D. Richardson
By means of inert markers of radio-platinum, it has been shown that cobalt metal oxidizes by out-ward diffusion of cobalt atoms through the oxide. Oxidation rates have been measured at various tempera
Jan 1, 1956
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Institute of Metals Division - Oxidation of Columbium Monoxide
By W. T. Hicks
The oxidation of CbO was studied by a gravimetric technique from 400° to 1200°C in oxygen. In this temperature range the oxidatiotz is characterized by an irlductive period of low oxidation rate, whic
Jan 1, 1962
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Institute of Metals Division - Oxidation of Molybdenum Silicides at High Temperatures and Low Pressures
By P. R. Gage, R. W. Bartlett
At high temperatues and reduced oxygen pressuves, molybdenum silicicles oxidize to form SiO(g) vathev than a passivating SiO2 film. This is a sevious problem for low-pressure applications of sili-cide
Jan 1, 1965
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Institute of Metals Division - Oxidation of Niobium (Columbium) in the Temperature Range 500o to 1200o C
By Per Kofstad, Hallstein Kjöllesdal
The oxidation behavior of niobium (columbium) has been studied in the temperature range 500° to 1200°C and at oxygen pressures of 760,100, 10, 1, and 0.1 mm of Hg. The work comprises kinetic studies
Jan 1, 1962
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Institute of Metals Division - Oxidation of Refractory Metals as a Function of Pressure, Temperature, and Time: Tantalum in Oxygen
By J. N. Ong
The oxidation of tantalum is assumed to occur by four simultaneous first-order chain reactions; solution of oxygen in the metal, nucleation and growth of a suboxide phase at the metal surface and two
Jan 1, 1962
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Institute of Metals Division - Oxidation of Single-Crystal and Polycrystalline Zirconium
By T. L. MacKay
Oxidation rates of single-crystal and poly crystalline zirconium in oxygen at temperatures from 307° to 815°C obey the parabolic rate law for short ex-posure time, 4 to 6 hr. The activation energy fo
Jan 1, 1963