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Institute of Metals Division - The System Chromium-CarbonBy N. J. Grant, D. S. Bloom
THE development of high temperature, high stress alloys had proceeded with such rapidity during the war, and for a short time afterward, that our knowledge of the constitution of the alloys had become
Jan 1, 1951
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Institute of Metals Division - The Ta-W-Re SystemBy J. H. Brophy, M. H. Kamdar, J. Wulff
A constitutional diagram for the Ta-W-Re alloy system is presented. Rhenium dissolves in the complete range of solid solutions between tungsten and tantalum up to 48 wt pct in tantalum 'to about
Jan 1, 1962
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Institute of Metals Division - The Temperature Dependence of the Microyield Points in Prestrained Magnesium Single CrystalsBy D. E. Hartman, J. M. Roberts
A detailed study of the temperature dependence of the critical stress, TB . necessary to cause a damping loss of 1.41 x 10-6 g mm per mm3 in pre-strained magnesium single crystals has been carried out
Jan 1, 1964
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Institute of Metals Division - The Tempering Characteristics of Some 0.4 Pct Carbon Ultra-high-Strength SteelsBy B. G. Reisdorf
This paper describes the microstructural changes that occur when quenched ultrahigh-strength steels containing OA pet C and various amounts of nickel, silicon, and cobalt are tempered. The changes
Jan 1, 1963
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Institute of Metals Division - The Tensile Fracture of Ductile MetalsBy H. C. Rogers
A phenomenological study of the failure of polycry stalline ductile metals at room temperature was carried out using light and electron microscopy. Tensile fractures as well as sections of partially
Jan 1, 1961
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Institute of Metals Division - The Thermodynamics of Dilute Interstitial Solid Solutions with Dual-Site Occupancy and its Application to the Diffusion of Carbon in Alpha IronBy Rex B. McLellan, M. L. Rudee, T. Ishibachi
A modelfor dilute quasi-regular interstitial solid solutions is proposed in which the solute atoms can occupy both the octahedral and tetrahedral interstices in the bee solvent lattice. The distributi
Jan 1, 1965
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Institute of Metals Division - The Thermoelastic Effect in Iron and Nickel as a Function of TemperatureBy R. Rocca, M. B. Bever
THE adiabatic elastic deformation of a body is accompanied by a change in temperature. This phenomenon is known as the thermoelastic effect. Under adiabatic conditions the temperature of a metal bar i
Jan 1, 1951
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Institute of Metals Division - The Third Stage of Work Hardening in Aluminum Crystals Deformed at 196°KBy A. Kelly, S. Sato
Tensile tests have been performed on aluminum single crystals of 99.99 pct purity at 196°K. The resolved shear stress when the stress-strain curve becomes concave to the strain axis depends on orien
Jan 1, 1960
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Institute of Metals Division - The Transformation in Beta-CuAl AlloysBy E. P. Klier, S. M. Grymko
The transformations in eutectoidal systems have been extensively studied as they occur in steels.' As a consequence of these studies the martensite, bainite and pearlite reactions found for most
Jan 1, 1950
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Institute of Metals Division - The Transformation Temperature of Hafnium (TN)By D. K. Deardorff, H. Kato
THE transformation temperature of hafnium from hcp to bcc is 1750° + 20 °C in contrast to previously published values by Duwez and fast2 which are believed inaccurate. The Bureau of Mines determined t
Jan 1, 1960
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Institute of Metals Division - The Transverse Bending of Single Crystals of AluminumBy M. K. Yen, W. R. Hibbard
Previous studies of plastic deformation of metals have emphasized the important role of bending and constraints during strain under relatively pure stresses.1"5 Some new phenomena such as early conjug
Jan 1, 1950
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Institute of Metals Division - The Vapor Pressures of Zinc and Cadmium over Some of Their Silver AlloyBy C. H. Cheng, C. E. Birchenall
The fundamental problem in the thermodynamics of solid solutions is the determinatiorl or calculation of the activities of the components as a function of temperature and composition. Since the theory
Jan 1, 1950
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Institute of Metals Division - The Warm Pressing of Beryllium PowderBy N. P. Pinto
Compacting below the recrystallization temperature was studied. Ideal density was attained at 550° to 600°C using 25 tsi. Compacts have strength and hardness higher than cold worked beryllium. The rec
Jan 1, 1955
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Institute of Metals Division - The Yielding and Strain-aging of Carburized and Nitrided Single Crystals of IronBy H. Schwartzbart, J. R. Low
Annealed, .Poly crystalline, low carbon steel exhibits a phenomenon known as the "yield point." If such a steel is loaded in tension, the load increases steadily with elastic strain, drops suddenly, f
Jan 1, 1950
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Institute of Metals Division - The Yielding of Magnesium Studied with UltrasonicsBy W. F. Chiao, R. B. Gordon
Tile sharp-yield point found in magnesium crystals in the solulion-treated and aged condition is studied by dislocation internal-friction experiments. The results show that the sharp yield is not file
Jan 1, 1965
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Institute of Metals Division - The Yttrium-Manganese SystemBy A. H. Daane, R. L. Myklebust
The yttrium-manganese system has been investigated by thermal, metallographic, and X-ray diffraction methods. There are three intermetallic compounds present: YMn2 which melts congruently, YMn4, which
Jan 1, 1962
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Institute of Metals Division - Theoretical Determination of the Slip System with Highest Resolved Shear Stress in a Fcc Crystal for any Orientation of the Tensile Axis (TN)By D. R. de Fontaine
By computing the values of the resolved shear stress for a great many orientations of the tensile axis on all 12 (111) <110> slip systems, Taylor and Elam' were able to map out a stereogram of sl
Jan 1, 1962
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Institute of Metals Division - Theory of the Influence of Stacking-Fault Width of Split Dislocations on High-Temperature Creep RateBy J. Weertman
An explanation is advanced for the recent results of Barrett and Sherby on the high-temperature creep of fee metals. Their measurements indicate that metals with a low stacking fault energy creep at a
Jan 1, 1965
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Institute of Metals Division - Thermal Diffusivity of Armco IronBy G. D. Cody, D. S. Beers, B. Abeles
The thermal diffusivity (thermal conductivity divided by specific heat) of Armco iron has been measured over the temperature range 30º to 1025ºC. The results are in good agreement with the thermal di
Jan 1, 1962