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Institute of Metals Division - Acceleration of Deformation by Concurrent Phase ChangeBy J. E. Pavlick, A. G. Guy
The total creep of tin alloys containing antimony in solid solution was observed to decrease with increase in antimony content. However, near the solubility limit an anomalous maximum in deformation
Jan 1, 1962
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Institute of Metals Division - Action of Vibration on Solidifying Aluminum Alloys (Discussion, p. 1295)By P. D. Southgate
VIBRATION, both ultrasonic and sonic, can affect the course of a variety of metallurgical processes. Reports of work on this subject have appeared at intervals over the last twenty years and a thoroug
Jan 1, 1958
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Institute of Metals Division - Activation Energies for Creep of Single Aluminum Crystals Favorably Oriented for Cubic SlipBy Y. A. Rocher, J. E. Dorn, L. A. Shepard
Creep activation energies for single aluminum crystals favorably oriented for shear by (010) [101] glide were detemined over the temperature range from 78" to 900°K. Observations of slip bands on the
Jan 1, 1960
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Institute of Metals Division - Activation Energies for Diffusion in Pure Metals and Concentrated Binary AlloysBy Louis E. Toth, Alan W. Searcy
A modification of Le Claire's microscopic model for self-diffusion is developed in a form suitable for prediction of activation energies for diffusion in disordered substitutional solutions as we
Jan 1, 1964
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Institute of Metals Division - Activation Energy for High Temperature Creep of High Purity AluminumBy H. I-Lieh Huang, O. D. Sherby, J. E. Dorn
RECENT investigations1-4 have suggested that the total plastic strain, C, for high temperature creep under a given stress can be correlated by means of a temperature-compensated time, te- where t is t
Jan 1, 1957
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Institute of Metals Division - Activation Energy for Recrystallization in Rolled CopperBy B. F. Decker, D. Harker
The recrystallization reaction in OFHC and spectroscopically pure copper has been followed by X ray diffraction determinations of the amount of material with the cold-worked and recrystallized t
Jan 1, 1951
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Institute of Metals Division - Activity of Carbon in Iron-Nickel Alloys at 1000°CBy R. P. Smith
THE carbon content of iron-silicon and of iron-manganese alloys at fixed activities of carbon has been reported previously.' It seemed desirable to investigate a system which allows a more extend
Jan 1, 1961
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Institute of Metals Division - Activity of Cd in Mg-Cd AlloysBy R. J. Borg, C. E. Birchenall
Vapor pressures of eight compositions of Mg-Cd have been determined by the Knudsen effusion technique. Measurements are made at several temperatures for each alloy and the results interpolated to a co
Jan 1, 1960
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Institute of Metals Division - Additional Observations on Twinning in Sapphire (Alpha-Al2O3 Crystals) During Compression (TN)By H. Conrad, K. Janowski, E. Stofel
In a previous paper,1 the occurrence of (0001) and (0111) twins was reported for compression tests of 60-deg-oriented sapphire rods in the temperature range from 1100° to 1300° C. Subsequent to this i
Jan 1, 1965
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Institute of Metals Division - Adhesion in Aluminum Oxide-Metal SystemsBy J. E. McDonald, J. G. Eberhart
A model is discussed from which the work of adhcslon .tor liquid transition metals on aluminum oxide surfaces can he calculated, A close-packed (00011 oxygen surface on A12O3 is assumed with two diffe
Jan 1, 1965
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Institute of Metals Division - Advanced Epitaxial Processes for Monolithic Integrated-Circuit ApplicationsBy Don M. Jackson
The techniques for the growth and controlled, graded doping of silicon epitaxial overgrowth layers were established. Grading of- impurities such as arsenic or boron in arbitrarily chosen profiles oile
Jan 1, 1965
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Institute of Metals Division - After-Effects in Polycrystalline CadmiumBy C. S. Barrett
The torsional after-effect in polycrystalline cadmium is interrupted by an abnormal twisting when the film is removed by etching. This is accounted for by the pile-up of dislocations beneath anodic or
Jan 1, 1954
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Institute of Metals Division - Age Hardening of Haynes Alloy No. 25 Determined by Elevated-Temperature Hardness Testing (TN)By George Hallerman, R. J. Gray
In the customary method of studying age hardening, the process of aging is interrupted by cooling the specimen and measuring its room-temperature hardness. However, the aging process may be convenient
Jan 1, 1964
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Institute of Metals Division - Age Softening of Beta BrassBy N. Brown, H. Green
The effect of quenching temperature and of aging temperature and time on compression stress-strain curves of ß brass was investigated. Age softening occurs at a rate which decreases with decrease of q
Jan 1, 1954
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Institute of Metals Division - Age-Hardening of Fe-20 Pct Ni MartensitesBy G. R. Speich
The age-hardening of Fe-18 to 21 pct Ni marten-sites containing small amounts of titanium, aluminum, copper, or molybdenum has been studied by hardness measurements, transmission electron microscopy,
Jan 1, 1963
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Institute of Metals Division - Aging Behavior of a Zinc Alloy Containing 25 pct Manganese, 15 pct Copper, 0.1 pct AluminumBy P. W. Ramsey, G. L. Werley
THERE have been numerous examples in recent years of the similarity between aging behavior and diffusion behavior, where a plot of the logarithm of the aging rate versus the reciprocal of the absolute
Jan 1, 1951
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Institute of Metals Division - Aging Characteristics of Magnesium-Lithium Base AlloysBy J. G. Kura, P. D. Frost, L. W. Eastwood
THE preparation and general properties of mag-nesium-lithium base alloys have been described in earlier papers.l,2 Lithium forms solid solutions with pure magnesium, lowers its density, and improves i
Jan 1, 1951
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Institute of Metals Division - Aging Characteristics of Nickel-Chromium Alloys Hardened with Titanium and Aluminum (Discussion page 1322)By N. J. Grant, R. Nordheim
An extensive study was made of the aging characteristics of alloys based on the 80 pct Ni-20 pct Cr composition hardened with aluminum and/or titanium, each up to 4 pct. Aging was followed by means of
Jan 1, 1955
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Institute of Metals Division - Aging Effects in Commercially Pure BerylliumBy D. R. Mash
A strong yield point with attendant enhanced mechanical properties was found in commercially pure beryllium under certain conditions of heat treatment. Beryllium specimens also responded to both quenc
Jan 1, 1956
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Institute of Metals Division - Aging in Complex Commercial Ni-Cr Alloys Hardened with Titanium and AluminumBy Nicholas J. Grant, Robert F. Wilde
TAYLOR and Floyd's"" work in establishing phase diagrams based on the elements Ni-Cr-Ti-A1 has led to an understanding of the precipitation hardening mechanism in alloys based on these elements.
Jan 1, 1958