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Institute of Metals Division - The Osmium-Iridium Equilibrium Diagram
By R. D. Reiswig, J. M. Dickinson
The 0s-Ir equilibrium diagram was determined. The diagram is of the simple peritectic type, with a peritectic temperature of about 2660°C. The solid miscibility gap is narrower than previously report
Jan 1, 1964
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Institute of Metals Division - The Oxidation and Corrosion of Niobium (Columbium)
By T. Johnston, B. Cox
The results of oxidation and corrosion experiments on niobium in oxygen and steam at temperatures of 350° to 650°C, and in dilute sulphate solutions at 300°C are presented. The oxidation of niobium i
Jan 1, 1963
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Institute of Metals Division - The Oxidation Kinetics of Zirconium Carbide
By M. E. Wadsworth, I. B. Cutler, R. W. Bartlett
The oxidation kinetics of ZrC was studied between 450" and 580°C in oxygen pressures from 6.5 x 10-to 1 atm using a ther mogravimetric apparatus and sized powder samples. Two parallel rate controlling
Jan 1, 1963
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Institute of Metals Division - The Oxidation of 'Reactive' Uranium Carbide
By E. W. Murbach
The oxidation of uranium carbide by oxygen at various pressures, and by air, has been investigated at temperatures up to 600°C. Arc-melted and cast uranium carbide displays oxidation behavior that app
Jan 1, 1963
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Institute of Metals Division - The Oxidation of Hastelloy Alloy X
By S. T. Wlodek
The surface and subscale oxidation reactions were followed by means of continuous weight-gain and metallographic techniques over the range 1600" to 2200°F (871° to 1204 °C) for up to 400 hr. Full iden
Jan 1, 1964
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Institute of Metals Division - The Oxidation of Iron in Carbon Dioxide-Carbon Monoxide Atmospheres
By W. W. Smeltzer
The linear formation rates of wustite films have been determined over the temperature range 590° to 1030°C using a vacuum microbalance technique. These rates are dependent directly on the partial pre
Jan 1, 1961
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Institute of Metals Division - The Oxidation of Lithium-Containing Nickel (TN)
By W. C. Hagel
In 1952, Hauffe and pfeiffer1,2 reported that parabolic rates of nickel oxidation are decreased by factors of two and four at 1100° and 1000°C, respectively, when Li2O vapor is present. Hauffe 's
Jan 1, 1965
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Institute of Metals Division - The Oxidation of René 41 and Udimet 700
By S. T. Wlodek
The scale md subscale reaction products were identified and their rates of formation were studied in air over the range 1600" to 2000°F (871 " to 1149°C) for periods of up to 400 hr and for hoth the s
Jan 1, 1964
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Institute of Metals Division - The Partition of Some Alloying Elements Between Carbide and Ferrite in Steels
By G. S. Farnham, D. A. Scott
Partition of certain elements, particularly nickel, was determined for slowly cooled steels, the greater number containing from 0.30 to 0.35 pct C. Approximately 3 pct of the nickel, 18 pct of the man
Jan 1, 1954
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Institute of Metals Division - The Pb-PbTe-PbSe Subternary System (TN)
By Donald E. Grimes
In conjunction with Inland Steel's development of lead-bearing steels possessing improved machin-ability because of tellurium and/or selenium additions, it was decided to determine liquidus and s
Jan 1, 1965
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Institute of Metals Division - The Permeability of Hastelloy B to Hydrogen (TN)
By D. W. Rudd, D. W. Vose, J. B. Vetrano
In an earlier paper the permeability character of Mo-0.5 pct Ti to hydrogen was described.' It was shown that this alloy is a more effective barrier to the passage of hydrogen than previously stu
Jan 1, 1963
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Institute of Metals Division - The Permeability of Mo-0.5 Pct Ti to Hydrogen
By D. W. Rudd, D. W. Vose, S. Johnson
The permeability of Mo-0.5 pel Ti to hydrogen was investigated over a limited range of temperature and pressuire (709° to 1100°C, 1.i and 2.0 atm). The resulting permeability, p, is found to obey the
Jan 1, 1962
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Institute of Metals Division - The Phase Diagram for the Pseudobinary System ZnTe-In2Te3 (TN)
By Donald R. Mason, Daniel F. O’Kane
DIFFERENTIAL thermal analysis measurements have been used to determine the ZnTe-In2Te3 pseudo-binary phase diagram. Since ZnTe and In2Te3 are both semiconductors, any intermediate compounds formed in
Jan 1, 1965
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Institute of Metals Division - The Phase Relationships in the Magnesium-Rich Region of the 335o Tetrahedron of the Mg- Al-Ca- Zn Phase Diagram (TN)
By J. B. Clark
An exploratory study of the 60 wt pct Mg and 80 wt pct Mg sections of the solid constitution in the magnesium-rich region of the Mg-Al-Ca-Zn system was undertaken. The objective of the investigation w
Jan 1, 1962
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Institute of Metals Division - The Plutonium-Cadmium Binary System
By P. A. Tucker, C. R. Hudgens, D. E. Etter, D. L. Roesch, D. B. Martin
The equilibrium phase diagram of the Pu-Cd system is presented based on data obtained by differential thermal analysis, metallography, and electron-microprobe X-ray analysis. Liquidus temperatures ran
Jan 1, 1965
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Institute of Metals Division - The Plutonium-Cerium System
By D. E. Etter, J. E. Selle
The Pu-Ce phase diagram was determined by differential thermal analysis, metallography, and elechm-nricroprobe analysis. The dingram is chararterized by a eutectic with extensive solid solubility in
Jan 1, 1964
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Institute of Metals Division - The Plutonium-Indium System
By K. A. Johnson, F. H. Ellinger, C. C. Land
The Pu-In phase diagram has been determined by thevmal, filtvation, micrographic, and X-ray diffraction methods. This alloy system is characterized by 1) limited solubility of indium (-2 at. pet) in 6
Jan 1, 1965
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Institute of Metals Division - The Polyform Hysteresis Loops of Thin-Gage High Cobalt-Iron Alloys (TN)
By H. L. B. Gould, Jr. Wenny D. H.
TO date there has been but limited interest in alloys of 80 to 95 pct Co and Fe with or without other additions. In 1932, S. R. Williams' reported practically zero magnetostriction for the 90 pct
Jan 1, 1965
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Institute of Metals Division - The Polymorphic Forms of Chromium. Examination of the Cr-Ni and Cr-Fe Systems by High Temperature X-Ray Diffraction Technique
By Michael Hoch, Walter C. Wyder
The Cr-Ni system was investigated between 900" and 1400°C and 45 to 100 wt pct Cr. The Cr-Fe system was studied between 1200" and 1385°C and 70 to 100 wt pct Cr. Powdered alloy compacts were produced
Jan 1, 1963
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Institute of Metals Division - The Precipitation of Carbon from Alpha-Iron I. Electromicroscopic Study
By R. H. Doremus, E. F. Koch
The first carbide phase that precipitates at 120°C from a iron containing about 0.02 wt pct, C was studied with the electron microscope. In both strained and unstrained material the carbide particles
Jan 1, 1961