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Institute of Metals Division - Evaporation of Solutes in Floating Zone Refining of SemiconductorsBy John R. Gould
A mathematical treatment of multiple-pass floating-zone refining of semiconductors, including the evaporation of solutes from the melt at reduced pressure, is presented. Vapor pressures and evaporatio
Jan 1, 1962
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Institute of Metals Division - Evidence for Reversion During Cyclic Loading of an Aluminum AlloyBy W. H. Herrnstein, J. B. Clark, E. C. Utley, A. J. McEvily
The ratio of the endurance limit (10' cycles) to tensile strength of age-hardened aluminum alloys is approximately 0.3, whereas the ratio for annealed alloys is about 0.5. The lower value for th
Jan 1, 1963
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Institute of Metals Division - Evidence for Solidification of a Metastable Phase in Fe-Ni AlloysBy R. E. Cech
Particles -3 to 30 µ diam of a 29.5 pet Ni, 70.5 pet Fe alloy after being melted and solidified while falling through a hydrogen atmosphere were found to contain a distortion-free body-centered-cubic
Jan 1, 1957
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Institute of Metals Division - Extractive Metallurgy DivisionBy M. J. Spendlove, H. W. St. Clair
An automatic surface-follower mechanism was used to measure the surface temperature and the rate of evaporation of molten zinc while undergoing distillation at low pressure. At pressures of 50 to 100
Jan 1, 1952
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Institute of Metals Division - Fabrication of Neptunium-237 Wire by Extrusion (TN)By R. E. Tate, L. J. Herman
We have had occasion to produce wire of Np-237 in small diameters for use in some chemical experiments. Since the mechanical metallurgy of neptunium has not been investigated extensively, it seems des
Jan 1, 1965
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Institute of Metals Division - Fabrication of Thorium PowdersBy K. G. Wikle, J. G. Klein, W. W. Beaver
Consolidation of hydride process, electrolytic, calcium reduced, and comminuted thorium powder, as well as saw chips and lathe turnings, by vacuum hot pressing and by cold pressing-vacuum sintering wa
Jan 1, 1957
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Institute of Metals Division - Factors Affecting the Morphology of an Array of Solid Particles in a Liquid MatrixBy H. W. Weart, S. Sarian
The effect of temperature, impurities, and capillarity on the morphology of solid particles in a liquid matrix is investigated. For the NbC-liquid iron system, at least, it is found that those particl
Jan 1, 1965
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Institute of Metals Division - Factors Affecting the Strength of Iron-Rich Iron-Molybdenum-Boron AlloysBy M. Semchyshen, A. P. Coldren, W. G. Scholz
A survey of the Fe-Mo-B system was made to determine the extent to which boron might affect the microstructure and strength properties of iron-rich Fe-Mo alloys. Seventeen vacuum-induc tion melted ing
Jan 1, 1964
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Institute of Metals Division - Fatigue Behavior of Hydrogen-Charged Tantalum (TN)By B. A. Wilcox
ThERE are several reports in the literature which indicate that both solid-solution hydrogen and hydride precipitates can promote low-temperature em-brittlement of tantalum.1-3 For example, Imgram et
Jan 1, 1964
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Institute of Metals Division - Fatigue in Single Crystals of CopperBy W. A. Backofen, M. L. Ebner
SINCE the early work of Gough with Hanson and Wright,l-3 the study of fatigue has been characterized by experiments on single crystals only in recent times.9-10 Now, increasing attention is given to t
Jan 1, 1960
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Institute of Metals Division - Faults in the Structure of Copper-Silicon AlloysBy C. S. Barrett
THE crystal imperfections known as faults in stacking (stacking disorder) are of importance to both fundamental and applied science and are receiving increasing attention. On the theoretical side ther
Jan 1, 1951
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Institute of Metals Division - Flaking of Heavy Alloy Steel Sections (Discussion, p. 1306)By C. R. Garr, A. R. Troiano
FLAKING or hair-line crack formation has been a major problem confronting the producer of large alloy steel forgings.' Today it is generally conceded that hydrogen in one or more forms in allo
Jan 1, 1958
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Institute of Metals Division - Formation and Composition of Internal Oxides in Dilute Iron AlloysBy S. A. Bradford
Internal-oxide precipitates in decarburized a iron alloys were studied by microscopic and X-ray methods. Diffusion of oxygen is primarily trans-granular, although large amounts of manganese or PhosPho
Jan 1, 1964
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Institute of Metals Division - Formation of Beta Manganese-Type Structure in Iron- Aluminum-Manganese Alloys (TN)By D. J. Schmatz
DISCUSSION OF RESULTS The qualitative correlation between low-temperature ductility and prior high-temperature creep strain in nickel obtained in this investigation confirms the result obtained on
Jan 1, 1960
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Institute of Metals Division - Fracture and Twinning in Sapphire (Alpha-Al2O3 Crystals)By H. Conrad, E. Stofel
The fracture behavior of 60-deg-oriented sapphire crystals was investigated for both tension and compression. Plastic flow on the basal plane was found to be a factor in reducing the tensile stress re
Jan 1, 1963
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Institute of Metals Division - Fracture Mechanisms in Controlled Cu-Cr Eutectic AlloyBy R. W. Hertzberg, R. W. Kraft
A study of the fracture behavior of unidirectwn-ally solidified Cu-Cr eutectic alloy was performed. Fractured whiskers, grain boundaries, and the interface between proeutectic Cr dendrites and the Cu
Jan 1, 1963
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Institute of Metals Division - Fracture of MolybdenumBy Robert T. Ault
The nature of fracture in unnotched tensile and notched tensile sheet and round specimens and V -notched and precracked Charpy-type sheet specimens of both wrought stress -relieved and re-crystallized
Jan 1, 1964
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Institute of Metals Division - Fracture of Zirconium and Zirconium-Hydrogen AlloysBy C. J. Beevers
Tlze influence of zirconium hydride precipitate mprphology on the fructure of Zr-H alloys tested at strain rates of 10- sec at 20° and - 196°C and at strain rates of -500 sec.-1 at 20°C has been inves
Jan 1, 1965
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Institute of Metals Division - Freckle Segregation in Vacuum Consumable-Electrode IngotsBy G. C. Gould
The nature of freckle segregation is determined by chemical analyses, microradiograplzy, and electron microprobe. In addition, the influence of chemistry variation on freckle formation is studied in l
Jan 1, 1965
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Institute of Metals Division - Free Energy of Formation of Cementite and the Solubility of Cementite in AusteniteBy R. W. Gurry, L. S. Darken
The solubility of cementite in austenite is computed by thermodynamic methods from the observed solubility of graphite. It is found that the solubility of cementite is greater than that of graphite in
Jan 1, 1952