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Institute of Metals Division - Effect of Purification on Basal Cleavage in Beryllium Single CrystalsBy D. F. Kaufman, E. D. Levine, L. R. Aronin
The deformation of' impure beryllium crystals by basal glide at room temperature invariably tevminates by basal cleavage after a few percent strain. It is generally accepted that .fracture of thi
Jan 1, 1964
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Institute of Metals Division - Effect of Rare-Earth Metals on the Properties of Extruded MagnesiumBy T. E. Leontis
The specific effect of various rare-earth metals on the room- and elevated-temperature properties of magnesium has been evaluated. Alloys containing didymium exhibit the highest tensile and compressiv
Jan 1, 1952
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Institute of Metals Division - Effect of Si and Al on the Stability of Certainsigma PhasesBy K. P. Gupta, P. A. Beck, N. S. Rajan
By determining the a phase boundaries in the following ternary systems: V-Fe-Si (at 1175oC), V-Co-Si (at 1175°C), V-Ni-Si (at 1175oC), Cr-Mn-Si (at 1000°C), Cr-Co-Si (at 1175°C), Cr-Ni-Si (at 1175°C)
Jan 1, 1961
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Institute of Metals Division - Effect of Solute Elements on the Tensile Deformation of CopperBy R. S. French, W. R. Hibbard
FOR tensile deformation, if the stress value is defined by the ratio of the load to the actual area, and the strain value by the natural logarithm of the ratio of the immediate length to the original
Jan 1, 1951
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Institute of Metals Division - Effect of Superimposed Static Tension on the Fatigue Process in Copper Subjected to Alternating TorsionBy W. A. Wood, H. M. Bendler
Cylindrical fatigue specimens of OFHC* copper were subjected to alternating torsion while under axial tension. The superimposed tension strongly influenced the fatigue life of the specimens as wel
Jan 1, 1962
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Institute of Metals Division - Effect of the Shapes of Intergranular Liquid on the Hot Cracking of Welds and CastingsBy J. C. Borland, J. H. Rogerson
Jan 1, 1963
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Institute of Metals Division - Effects of Compression and Annealing on the Structure and Electrical Properties of GermaniumBy E. S. Greiner
STUDY of the plasticity of germanium or other semiconductor crystals affords unusual opportunities to extend our knowledge of deformation mechanisms. Crystals are available having extraordinary perfec
Jan 1, 1958
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Institute of Metals Division - Effects of Grain Size on Tensile and Creep Properties of Arc-Melted and Electron-Beam-Melted Tungsten at 2250° to 4140°FBy William D. Klopp
A study was conducted of the tensile and creep properties of are-melted and electron-beam-melted tungsten over the temperature range 2250° to 4140°F. The tensile and creep strengths vary with pain siz
Jan 1, 1965
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Institute of Metals Division - Effects of Oxygen, Nitrogen, and Carbon on The Ductility of Cast MolybdenumBy G. W. P. Rengstorff, L. E. Olds
High purity molybdenum ingots containing controlled amounts of a single impurity element (oxygen, nitrogen, or carbon) were prepared. These ingots were tested for ductility by bending test specimens a
Jan 1, 1957
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Institute of Metals Division - Effects of Three Interstitial Solutes (Nitrogen, Oxygen and Carbon) on the Mechanical Properties of High-purity, Alpha TitaniumBy J. A. Snyder, W. L. Finlay
SEVERAL notable studies of the effects of sub- stitutional solutes have been reported. Outstanding among these for its elucidation of general principles, is the summarized work of Hume-Rothery and cow
Jan 1, 1951
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Institute of Metals Division - Electron-Microprobe Analyses of Segregation Produced During Cellular Solidification of "Pure" AluminumBy H. A. Domian, H. Biloni, G. F. Bolling
Jan 1, 1965
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Institute of Metals Division - Embrittlement of NaCl by Surface Compound FormationBy W. H. Class
The embrittling effects of oxygen, ozone, nitrogen, air, and surface residues, on NaCl has been investigated. The embrittlement by ozone and oxygen was found to be associated with the formation of a N
Jan 1, 1962
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Institute of Metals Division - Equilibrium Electrode Potentials of Some Metal-Chlorine Galvanic Cells and Activities of Some Metal Chlorides in LiC1-KC1 Eutectic MeltBy R. G. Hudson, L. Yang
In electrochemical separation of metals, it is necessary to control the potential applied between the electrodes so that only the desired electrode reactions can occur. A knowledge of the minimum po
Jan 1, 1960
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Institute of Metals Division - Etch Pits and Dislocations in Zinc MonocrystalsBy John J. Gilman
F many years it has been suspected that a correlation existed between pits produced by etching and the density of dislocations in crystals. In 1953, the interest in this correlation was greatly stimul
Jan 1, 1957
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Institute of Metals Division - Evidence for Reversion During Cyclic Loading of an Aluminum AlloyBy W. H. Herrnstein, J. B. Clark, E. C. Utley, A. J. McEvily
The ratio of the endurance limit (10' cycles) to tensile strength of age-hardened aluminum alloys is approximately 0.3, whereas the ratio for annealed alloys is about 0.5. The lower value for th
Jan 1, 1963
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Institute of Metals Division - Extractive Metallurgy DivisionBy M. J. Spendlove, H. W. St. Clair
An automatic surface-follower mechanism was used to measure the surface temperature and the rate of evaporation of molten zinc while undergoing distillation at low pressure. At pressures of 50 to 100
Jan 1, 1952
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Institute of Metals Division - Fatigue Behavior of Hydrogen-Charged Tantalum (TN)By B. A. Wilcox
ThERE are several reports in the literature which indicate that both solid-solution hydrogen and hydride precipitates can promote low-temperature em-brittlement of tantalum.1-3 For example, Imgram et
Jan 1, 1964
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Institute of Metals Division - Fracture and Twinning in Sapphire (Alpha-Al2O3 Crystals)By H. Conrad, E. Stofel
The fracture behavior of 60-deg-oriented sapphire crystals was investigated for both tension and compression. Plastic flow on the basal plane was found to be a factor in reducing the tensile stress re
Jan 1, 1963
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Institute of Metals Division - Fracture of Zirconium and Zirconium-Hydrogen AlloysBy C. J. Beevers
Tlze influence of zirconium hydride precipitate mprphology on the fructure of Zr-H alloys tested at strain rates of 10- sec at 20° and - 196°C and at strain rates of -500 sec.-1 at 20°C has been inves
Jan 1, 1965
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Institute of Metals Division - Free Energy of Formation of Cementite and the Solubility of Cementite in AusteniteBy R. W. Gurry, L. S. Darken
The solubility of cementite in austenite is computed by thermodynamic methods from the observed solubility of graphite. It is found that the solubility of cementite is greater than that of graphite in
Jan 1, 1952