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Institute of Metals Division - Technique for Determining Orientation Relationships and Interfacial Planes in Polyphase Alloys: Application to Controlled Eutectic SpecimenBy R. W. Kraft
A back- reflection precession-type X-yay camera for determining the crystallographic orientation of the crystallites of both phases in small areas of thick specimens of polyphase alloys is described a
Jan 1, 1962
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Institute of Metals Division - Temper Embrittlement of 5140 SteelBy C. A. Siebert, S. H. Bush
Isothermal temper-embrittlement studies were conducted on a 5140 steel at various temperatures for times as long as 3000 hr. Specimens from the embrittled steel were subjected to impact tests, metallo
Jan 1, 1955
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Institute of Metals Division - Temperature Coefficients of Electrical Resistance of Nickel-Rich Alloys in the Nickel-Chromium-Iron Alloy SystemBy Charles L. Guettel
The temperature coefficients of electrical resistance of 31 alloys in the nickel-rich corner of the Ni-Cr-Fe system were determined. The results indicate that a range of binary Ni-Cr alloys has lower
Jan 1, 1963
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Institute of Metals Division - Temperature Dependence of Grain Migration in High-Purity Lead Containing Small Additions of TinBy J. W. Rutter, K. T. Aust
The temperature dependence of the rate of grain boundary migration was measured in bicrystals of zone-refined lead containing from 20 to less than 1 ppm by wezght of tin. The apparent activation ene
Jan 1, 1960
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Institute of Metals Division - Temperature Dependence of Recovery Phenomena in a Cold-Rolled Aluminum Single CrystalBy Paul A. Beck, A. H. Lutts
IN a previous paper' isothermal softening and X-ray line sharpening data were reported for the annealing at 350°C of single crystals of pure aluminum rolled on the (110) plane in the [112] direct
Jan 1, 1957
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Institute of Metals Division - Temperature Dependence of Steady-State Creep in a Dispersion-Strengthened Indium-Glass CompositeBy J. C. Shyne, T. D. Gulden
The steady-state creep behavior, in compression, of indium containing a dispersion of atomized glass particles was studzed over a range of temperature, stress, and composition. The observed behavior
Jan 1, 1963
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Institute of Metals Division - Temperature Dependence of the Critical Stress for Slip in Magnesium Alloy Monocrystals (TN)By R. R. Nash, W. F. Sheely, E. D. Levine
ThiS note reports on the variation with temperature of critical stress for basal slip of binary solid-solution single crystals of indium and of thorium in magnesium. PROCEDURE Alloy single cryst
Jan 1, 1960
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Institute of Metals Division - Temperature Dependence of the Hardness of Secondary Phases Common in Turbine Bucket AlloysBy J. H. Westbrook
UNTIL very recently the development of high temperature alloys has been strictly empirical. It is, in fact, a great tribute to the intuition, perseverance, and industry of the practicing metallurgists
Jan 1, 1958
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Institute of Metals Division - Temperature Dependence of the Yielding Behavior of SAP-Type Dispersion Strengthened Alloys (TN)By R. A. Bosch, F. V. Lenel, G. S. Ansell
RECENTLY, Ansell and aenel' proposed a dislocation model to account for the yielding behavior of dispersion-strengthened alloys. The criterion for yielding used in this model was that yielding o
Jan 1, 1962
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Institute of Metals Division - Temperature Gradient Zone MeltingBy W. G. Pfann
Under certain conditions, a molten zone can be made to move through a solid by impressing a stationary temperature gradient across the solid. This phenomenon can be utilized in fabricating semiconduct
Jan 1, 1956
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Institute of Metals Division - Tensile Behavior of Copper Foils Prepared from Rolled MaterialBy A. Lawley S. Schuster
The tensile behavior of copper foils prepared from rolled bulk material has been studied over the thickness range 2 to 53 , and for a range of pain sizes. For foils of comparable grain size, having th
Jan 1, 1964
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Institute of Metals Division - Tensile Behavior of the Intermetallic Compound AgMgBy D. L. Wood, J. H. Westbrook
The tensile behaviors of the CsCl structure compound AgMg are extensively documented in terms of strain, strain rate, temperature, composition, and metallurgical processing treatment. The observations
Jan 1, 1962
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Institute of Metals Division - Tensile Behavior of Zone-Melted Molybdenum-Rhenium Single CrystalsBy R. Maddin, A. Lawley
Single crystal Mo-Re alloys (99.99+ purity), grown by electron bombardment floating zone heating, were deformed in tension at temperatures from -196° to +200°C. At -196oC, Mo-6 pet Re and Mo-20 pct Re
Jan 1, 1962
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Institute of Metals Division - Tensile Characteristics of Particle-Strengthened Alloys of Zirconium With IronBy J. H. Keeler
The tensile characteristics of Zr-Fe binary alloys containing up to 5 atomic pet Fe are reported for the temperature range —195o to 500°C. A linear relation between stress at constant strain and volum
Jan 1, 1957
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Institute of Metals Division - Tensile Creep of High Purity Aluminum (Dlscussion, p. 1419)By R. W. Guard, W. R. Hibbard
As part of a program to determine the deformation characteristics of pure metals, the tensile creep properties of high purity aluminum (99.994 pct Al) have been determined using a constant stress load
Jan 1, 1957
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Institute of Metals Division - Tensile Deformation of Aluminum as a Function Of Temperature. Strain Rate, and Grain SizeBy R. P. Carreker
ONE of a series, this report is concerned with the experimental documentation of the deformation behavior of pure metals over a wide range of temperature. Previous reports in the series describe the c
Jan 1, 1958
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Institute of Metals Division - Tensile Deformation of Germanium Single CrystalsBy R. P. Carreker
GERMANIUM is a member of that group of ele-nents—carbon, silicon, germanium, and tin-— that are currently of particular interest because of their interesting electrical properties. Near room temperatu
Jan 1, 1957
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Institute of Metals Division - Tensile Deformation of Molybdenum as a Function of Temperature and Strain RateBy R. P. Carreker, R. W. Guard
True stress-true strain data are given for nominally pure molybdenum (99.95 pct) over the temperature range -196° to 1540°C (0.027 to 0.63 T/T). Strain rate sensitivity was determined by rate change t
Jan 1, 1957
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Institute of Metals Division - Tensile Deformation of Silver as a Function of Temperature, Strain Rate, and Grain SizeBy R. P. Carreker
THE experiments described in this report were conducted as a part of a general program designed to document the deformation behavior of pure metals over a wide range of temperature. Material
Jan 1, 1958
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Institute of Metals Division - Tensile Flow and Fracture Temperature Dependence of Some Iron-Base AlloysBy John Nunes, Frank R. Larson
Temperature-dependent functions of various ten-sile flour stress and fracture parameters were investigated on iron and low composition alloys of Fe-C, Fe-Cr, Fe-Mn, and Fe-Ni. Data were obtained over
Jan 1, 1963