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Institute of Metals Division - Diffusion of Tungsten and Rhenium Tracers in Tungsten
By R. L. Andelin, J. D. Knight, M. Kahn
Self-diffusion in single-crystal tungsten and diffusion of rhenium tracer in single-crystal tungsten have been measured over the temperature range 2660° to 3230°C by direct sectioning and radio-chemic
Jan 1, 1965
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Institute of Metals Division - Diffusion of V48 in Vanadium (TN)
By T. S. Lundy, C. J. McHargue
HE diffusion rate of v48 in single crystals of bee vanadium has been determined at temperatures from 1002° to 1888°C. Standard techniques of lathe sectioning were used for specimens annealed above 150
Jan 1, 1965
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Institute of Metals Division - Diffusion of Zinc and Copper in Alpha and Beta Brasses
By R. W. Balluffi, R. Resnick
NUMEROUS investigations of chemical diffusion in a brass have been made and the results are collected in several places.1-3 This work has been mainly concerned with the determination of the chemical d
Jan 1, 1956
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Institute of Metals Division - Diffusion of Zinc from the Vapor Phase into Copper-Zinc and Silver-Zinc Alloys
By A. G. Guy
Zinc vapor from a reservoir of liquid zinc maintained at lower temperatures was diffused into sets of copper-zinc alloys at 759° and 870° C and into sets of silver-zinc alloys at 650° and 700° C. Eac
Jan 1, 1960
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Institute of Metals Division - Diffusion of Zr95 and Cb95 in Bcc Zirconium
By T. S. Lundy, J. I. Federer
Chemically purified Zr95and Cb95 have been used in determining self-diffusion coefficients in the bcc phase of iodide zirconium over the temperature range of 900o to 1750°C. The temperature dependenc
Jan 1, 1963
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Institute of Metals Division - Diffusion Problems Related to GaAs Injection Lasers
By M. H. Pilkuhn, H. Rupprecht
p layers on n-type substrates of GaAs were prepared by difhsion of zinc into these substrates. Experimental details about the diffusion technique will be presented. It will be shown that inhomogeneity
Jan 1, 1964
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Institute of Metals Division - Diffusion Studies in the Uranium-Niobium (Columbium) System
By R. E. Ogilvie, N. L. Peterson
Intevdiffusion and intrinsic diffusiorz coefficients were determined in the uranium-niobium system from diffusion couples analyzed with an electron microbeam probe. A Previously unveported intermedia
Jan 1, 1961
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Institute of Metals Division - Diffusionless Phase Change in the Indium-Thallium System
By T. A. Read, M. W. Burkart
The crystal geometry of the cubic-tetragonal interface after partial transformation of an indium-thallium alloy single crystal is described and a general theory is presented. The effects of applied st
Jan 1, 1954
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Institute of Metals Division - Dihedral Angle Measurement
By O. K. Riegger, L. H. Van Vlack
The median angle of relatively few two-dimensional observations provides a satisfactory value for dihedral angle determinations. Those data that contain bimodal or non-equilibriated dihedral angle dis
Jan 1, 1961
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Institute of Metals Division - Dilatometric Investigation of Vacuum-Melted Zircaloy-2
By Josef Intrater
A dilatometric determination of the a + ß region temperature limits was performed on vacuum melted Zircaloy-2. The temperature of transformation for a-a+ß and a+ß — ß on heating and cooling as a funct
Jan 1, 1962
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Institute of Metals Division - Dilatometric Study of a Titanium-Oxygen-Hydrogen Alloy (TN)
By M. T. Hepworth, W. B. Sample
HYDROGEN solubility and linear contraction measurements were made at constant temperature on an alloy of titanium of constant oxygen-to-titanium molal ratio but variable hydrogen content. A cyl
Jan 1, 1962
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Institute of Metals Division - Dilute Alloying Effects on Recrystallization in Nickel as Compared with Other Transition Element Solvents
By E. P. Abrahamson
The effect of transition element binary solid solution additions upon the re crystallization temperature of nickel has been investigated. All additions raised the re crystallization temperature. Both
Jan 1, 1962
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Institute of Metals Division - Direct Observations of Precipitation in Thin Foils of A1-20 Pct Ag Alloy
By J. A. Hren, G. Thomas
A high-temperature stage has been used to study precipitation and dissolution in thin foils of Al-20pct Ag alloy directly in the electron microscope. The results show that the aging characteristics a
Jan 1, 1963
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Institute of Metals Division - Direct Observations on the Annealing of a Si-Fe Crystal in the Electron Microscope
By Hsun Hu
Direct observations were made on the recrystalli-zntion of a cold-rolled (110) [001] crystal of 3 pct Si-Fe by annealing thin sections of the specimen inside the electron microscope during examination
Jan 1, 1962
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Institute of Metals Division - Directional Freezing of Magnesium Alloys
By J. B. Clark, A. S. Yue
PfANN1 has shown that when a cylinder of molten binary alloy freezes directionally, the solute distribution can be described analytically by cg=k(l-g)k-1 [1]
Jan 1, 1961
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Institute of Metals Division - Directional Properties of 2S Aluminum
By F. R. Morral, K. T. Aust
The preferred orientation and earing characteristics of ZS aluminum were studied. An empirical correlation was obtained relating earing behavior and variation of mechanical properties for face-centere
Jan 1, 1954
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Institute of Metals Division - Discontinuities in the S-N Fatigue Curve of (111) Copper Single Crystals (TN)
By Harmon D. Nine
DISCONTINUITIES in the strain vs cycles to failure (S-N) fatigue curves have been reported for polycrystalline materials by Porter and Levy for copper,' by Benham and Ford for mild steel,' a
Jan 1, 1965
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Institute of Metals Division - Discontinuous Crack Growth in Hydrogenated Steel
By A. R. Troiano, E. A. Steigerwald, F. W. Schaller
The kinetics of crack propagation in a hydrogenated high-strength steel at subzero temperatures indicated that cracking progressed in a discontinuous fashion. The delayed failure process thus involves
Jan 1, 1960
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Institute of Metals Division - Discontinuous Crack Propagation-Further Studies
By L. D. Jaffe, H. C. Mann, E. L. Reed
The authors have recently published1 evidence that brittle transgranular fracture of polycrystalline metals does not originate at a point and propagate continuously across the material, but rather dev
Jan 1, 1950
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Institute of Metals Division - Discussion of "Specimen Temperature During Electropolishing of Aluminum Crystals" (TN)
By I. R. Kramer
In his technical note entitled "Specimen Temperature During Electropolishing of Aluminum Crystals" Dr. Nakada 1 reported that the temperature of his aluminum specimen increased 65°C when it was polish
Jan 1, 1965