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Institute of Metals Division - On the Deformation of Tungsten Single Crystals by RollingBy J. P. Neumann, L. Raymond
At temperatures near 1000°C, only the (112) (111) slip systems are operatire in tungsten. Therefore, the substructure introduced into the billet upon rleforming a single crystal by rolling at 1000 "C
Jan 1, 1965
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Institute of Metals Division - On The Heats of Formation of Copper-Nickel AlloysBy J. S. Ll. Leach, M. B. Bever
THE system copper-nickel exhibits complete solid and liquid miscibility1 The thermodynamic properties of such a system would not be expected to deviate greatly from ideality. Although the evidence
Jan 1, 1960
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Institute of Metals Division - On the Intersection Mechanism of Plastic Deformation in Aluminum Single CrystalsBy S. K. Mitra
A refinement of the Seeger model for intersection process is investigated which is in better agreement with experimental observations than the original. It is shown that, in single crystals, the strai
Jan 1, 1962
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Institute of Metals Division - On the Mechanism and Kinetics of the Scaling of IronBy M. T. Simnad, C. E. Birchenall, M. H. Davis
The transport mechanisms previously proposed in wustite and hematite have been confirmed by movement of inert markers during the growth of these phases. By similar measurements the mechanism for magne
Jan 1, 1952
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Institute of Metals Division - On the Nature of Embrittlement Occurring While Tempering a Ni-Cr Alloy Steel (Discussion 1310)By G. Bhat, J. F. Libsch
A STUDY of the kinetics of embrittlement in engineering alloy steels during tempering has indicated that the presence of alloying elements may define two distinct regions of embrittlement: 1) at 800°
Jan 1, 1958
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Institute of Metals Division - On the Occurrence of Some U2X Compounds of Uranium with Transition MetalsBy A. E. Dwight, A. F. Berndt
Binary and ternary alloys of uranium with transition metals were prepared with U2X stoichiometry. The compounds U2Tc, U2Rh, U2Os, and U2lr were formed by peritectic or peritectoid transformations, and
Jan 1, 1965
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Institute of Metals Division - On the Origin of Tertiary Creep in an Aluminum AlloyBy F. N. Rhines, A. S. Nemy
The mode of high-temperature tertiary creep of 523-0 aluminum alloy was found to be strongly stress dependent. The occurrence of necking and/or fissures during tertiary creep exhibited a sequence with
Jan 1, 1960
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Institute of Metals Division - On the Thermodynamic Properties of the Intermediate Phases in the System Au-SnBy B. W. Howlett, M. B. Bever, Somnath Misra
The heats oj- formation at 0°C of the compounds AuSn,, AuSn2, AuSn, and the £ phase were measured in a metal -solution calorimeter with liquid tin or a liquid Sn-Bi alloy as solvent. The melting point
Jan 1, 1965
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Institute of Metals Division - Order-Disorder Transformation in Cu-Au Alloys near the Composition CuAuBy J. B. Newkirk
Results of a Debye-Scherrer X-ray investigation are given which show that the order-disorder transformation is a first-order or heterogeneous reaction in Cu-AU alloys with compositions near CuAu. Evid
Jan 1, 1954
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Institute of Metals Division - Order-Disorder Transformations in Iron-Aluminum AlloysBy H. J. McQueen, G. C. Kuczynski
ThE useful properties of k6-Alfenol and the thermenol alloys (summarized by J. E. Nachman and W. J. Buehler') have encouraged research into those alloys which, having compositions near 25 at. pct
Jan 1, 1960
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Institute of Metals Division - Ordering and Magnetic Heat Treatment of the 50 Pct Fe-50 Pct Co AlloyBy G. P. Conard, R. C. Hall, J. F. Libsch
The 50 pct Fe-50 pct Co alloy undergoes a transformation from disorder to an ordered structure of the CsCl type reportedly in the vicinity of 732OC. During this process, the coercive force goes throug
Jan 1, 1956
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Institute of Metals Division - Ordering Reaction of the Cu4Pd AlloyBy 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 Relationships in Cast GermaniumBy 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 LeadBy 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 CrystalsBy 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 - 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 - Origin of Porosity in Castings of Magnesium-Aluminum and Other AlloysBy 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 of Molybdenum Silicides at High Temperatures and Low PressuresBy 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 Single-Crystal and Polycrystalline ZirconiumBy 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
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Institute of Metals Division - Oxidation of Tin (TN)By Charles Luner
ALTHOUGH the kinetics of the atmospheric oxidation of tin have been studied,1-3 the kinetics in pure oxygen have not been reported. This note presents some results of the kinetics of the oxidation of
Jan 1, 1961