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Institute of Metals Division - Some Observations of Subgrain Formation During Creep in High Purity AluminumBy J. T. Norton, N. J. Grant, I. S., Servi
Coarse grained high purity aluminum was tested in creep at temperatures of 400° to 1200°F to develop subgrain structures. Measurements of subgrain size, distribution, and rotation were made from X-ray
Jan 1, 1953
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Institute of Metals Division - Some Observations of the Deformation Modes of Polycrystalline Hafnium and Zirconium (TN)By D. H. Baldwin, R. E. Reed-Hill
DURING the course of experiments involving oxygen equilibrations with a high-purity Pd-5 at. pct Rh alloy, the appearance of a subscale was noted. Most of the heat treatments in a pure oxygen atmosphe
Jan 1, 1965
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Institute of Metals Division - Some Observations on the Recovery of Cold Worked AluminumBy H. Sigurdson, T. V. Cherian, C. H. Moore
The phenomenon of recovery of cold-worked metals is interesting not only because of its practical importance but also because of its fundamental significance in solid state reactions. Although extensi
Jan 1, 1950
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Institute of Metals Division - Some Observations on the Structure of Grain Boundary Fracture SurfacesBy Nicholas J. Grant, H. C. Chang
TRANSCRYSTALLINE fracture surfaces of the cleavage type have been examined by microscopy and X-rays for several metals.' These investigations revealed that the fractured surfaces were not flat an
Jan 1, 1957
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Institute of Metals Division - Some Observations on the Tertiary Stage of Creep of High Purity AluminumBy G. R. Wilms
A study has been made of the structural changes in polycrystalline high purity aluminum during the tertiary stage of creep under conditions of constant tensile load. It appears that there is no basic
Jan 1, 1955
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Institute of Metals Division - Some Observations on the Work Hardening of MetalsBy E. H. Edwards, J. Washburn, E. R. Parker
The mechanism of strain hardening was discussed in connection with some recent observations on the stress-induced motion of dislocation boundaries and on the simple shear deformation of zinc, cadmium,
Jan 1, 1954
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Institute of Metals Division - Some Properties and Metallography of Steel-Bonded Titanium CarbideBy Martin Epner, Eric Gregory
DURING the past decade, considerable work has been carried out on various cermet systems in an effort to produce materials suitable for high-temperature applications in gas turbines. Most of the mater
Jan 1, 1961
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Institute of Metals Division - Some Properties of Vanadium at Subatmospheric Temperatures (TN)By J. A. Hren, C. M. Wayman
RECENT investigators have noted anomalous behavior in the electrical resistivity of vanadium below room temperature. Rostoker and Yamamoto1 in studying the vanadium-oxygen system hypothesized that th
Jan 1, 1961
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Institute of Metals Division - Some Studies of A1-Cu and Al-Zr Solid State BondingBy S. Storchheim
MORE and more attention is being paid to the bonding of metals in their solid states. For a better understanding of this technique for joining metals and how it is affected by changes in temperature,
Jan 1, 1956
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Institute of Metals Division - Some Transient Effects During Creep And Tensile Tests of an Aluminum AlloyBy H. A. Lequear, J. D. Lubahn
A sudden change from one constant strain rate to another during a tensile test causes an unusual transient in aluminum alloy 61ST. A sudden change from one constant stress to another during a creep te
Jan 1, 1957
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Institute of Metals Division - Source of (001)[100] Primaries in 3 Pct Si-Fe AlloysBy R. G. Aspden
The cold rolling and annealing textures were studied for 3 pct Si-Fe grains initially (001) [hkl]. A concentration of (001) [loo] primaries were observed only in the annealing textures of crystals ini
Jan 1, 1963
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Institute of Metals Division - Specification and Measurement of Microstructural AnisotropyBy J. E. Hilliard
It is proposed that shape anisotropy in the internal structure of materials be defined by distribution functions which specify what fraction of the total line length or boundary area lies in a given d
Jan 1, 1962
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Institute of Metals Division - Specimen Temperature During Electropolishing of Aluminum Crystals (TN)By Yoshinao Nakada
In many experiments involving electropolishing such as electropolishing during deformation and electrothinning of deformed metals for electron microscopy, it is usually assumed that the specimen tempe
Jan 1, 1965
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Institute of Metals Division - Stability of AISI Alloy SteelsBy E. F. Ketterer, D. B. Collyer, A. B. Wilder
AISI constructional alloy steels are a series of steels in which a numbering system signifies the chemical composition limits. SAE (Society of Automotive Engineers) and AISI (American Iron and Steel I
Jan 1, 1958
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Institute of Metals Division - Stacking Faults in Platinum (TN)By F. R. Brotzen, J. Taranto
SEVERAL investigators have computed stacking-fault concentrations from X-ray diffraction data.'-' The method generally employed relates the line shift to the stacking-fault probability. In t
Jan 1, 1962
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Institute of Metals Division - Stages in the Deformation of Monel Metal as Shown by Polarized LightBy D. H. Woodard
One of the principal uses of polarized light in metallurgy is to show the granular structure of metals by contrasting reflections. This use is confined largely to anisotropic metals, such as beryllium
Jan 1, 1950
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Institute of Metals Division - Statistical Grain Structure Studies Plane Distribution Curves of Regular Polyhedrons (Discussion page 1570)By W. J. Houk, F. C. Hull
To clarify interpretations of grain structures and to assist in calculations of spatial grain size distributions, plane distribution curves have been determined for random sections through four regula
Jan 1, 1954
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Institute of Metals Division - Statistical Model for Nonsubstitutional Solutions: a) Interstitial Solutions, b) Deviation from Stoichiometry in Inorganic CompoundsBy M. Hoch
Equations are derived from statistical considerations to represent the activities of each component of an interstitial solution, and of a compound with a wide homogeneity range as a function of compos
Jan 1, 1964
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Institute of Metals Division - Steady State Creep in a CuAu3-Alloy (TN)By R. G. Davies
WeERTMANI has shown that the high temperature steady state creep rate, i, in lead and indium-base alloys obeys an equation of the form where AH is the activation energy, o the applied stress, n the
Jan 1, 1962
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Institute of Metals Division - Steady State Creep in Iron-15 to 20 At. Pct Aluminum AlloysBy R. G. Davies
Above 500°C, where dislocation climb is rate controlling, it is observed that the activation energy for creep is independent of the apblied stress, although it varies from 62 kcal per mol at 15 pct A1
Jan 1, 1963