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Institute of Metals Division - Copper-Silica and Copper-Alumina Alloys Of High Temperature InterestBy Nicholas J. Grant, Klaus M. Zwilsky
EVER since the unusual high temperature creep resistance and structure stability of SAP (Sintered Aluminum Powder) and similar aluminum-alumina alloys were reported,'," there has been a need to d
Jan 1, 1958
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Institute of Metals Division - Copper-Zinc Constitution Diagram, Redetermined in the Vicinity of the Beta Phase by Means of Quantitative MetallographyBy C. S. Smith, L. H. Beck
KNOWLEDGE of the Cu-Zn constitution diagram was critically examined in 1944 by G. V. Ray-nor,1 who suggested the diagram reproduced in Fig. 1 as the best evaluation of available data. No pertinent wor
Jan 1, 1953
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Institute of Metals Division - Correlation Between Electrical Conductivity and Temperature Coefficient of Resistance of Solid-Solution AlloysBy W. R. Johnson, M. Hansen, John M. Parks
AS part of a research project sponsored by the Signal Corps Engineering Laboratories, which had the objective of obtaining a magnet wire of good conductivity and low temperature coefficient of resista
Jan 1, 1952
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Institute of Metals Division - Correlation Between Microstructure and Resistivity of Transforming Ti-Mn AlloysBy D. J. DeLazaro, D. W. Levinson
Observations were made of the isothermal transformation and quench and reheat transformation characteristics of binary titanium alloys containing nominally 6 wt pct and 10 wt pct Mn at temperatures of
Jan 1, 1955
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Institute of Metals Division - Correlation of Diffusion Data in FCC Metals as a Function of Atomic VolumeBy R. H. Moore
The data for diffusion in dilute binary alloys with the Solvents Ag, Cu, Ni, Fe. Al. and Pb hare been correlated as a function of atomic volume. Linear equations of the form: Q = b - a log V ar
Jan 1, 1965
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Institute of Metals Division - Correlation of Electrical Conductivity and Resistivity of Solid Solution Alloys with Temperature Coefficient of ResistanceBy C. Dean Starr
The physical basis of the equation correlating electrical conductizlity and temperature coefficient of resistance of solid solution alloys has been inzlestzgated and the nature of the constants evalua
Jan 1, 1963
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Institute of Metals Division - Correlation of the Tensile Properties of Pure Magnesium and Four Commercial Alloys with Their Mode of FracturingBy E. J. Ripling, M. W. Toaz
Tensile tests were conducted on pure magnesium and on four commercial alloys over a variety of temperatures and strain rates. The high positive slope of the ductility vs testing temperature curves tha
Jan 1, 1957
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Institute of Metals Division - Correlation of Transformation Behavior with Mechanical Properties of Several Titanium-Base AlloysBy A. J. Griest, P. D. Frost, J. R. Doig
During the past 5 years, research directed toward the development of titanium alloys having improved strength-ductility relationships and heat treatability has been carried out at Battelle for the U.
Jan 1, 1960
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Institute of Metals Division - Corrosion of Stainless Steels by Zinc VaporBy L. Burris, G. A. Bennett, P. A. Nelson
Staznless steels ave rrzuch less seuel-ely attacketl by zinc lapov than by molten zinc systems. To determine the applicubility of stainless steels fov equipment items which would be exposed only to zi
Jan 1, 1965
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Institute of Metals Division - Cr3O-Type Structure in V-Rh-Si, Nb-Rh-Si and Cr-Rh-Si Ternary Systems (TN)By R. C. Wilcox, R. V. Lawrence, P. A. Calhoun
The V-Rh-Si, Nb-Rh-Si, and Cr-Rh-Si systems were investigated to evaluate the extent of solid solubility between binary Cr3O structures. All Cr3O components lie within the favorable atomic size range1
Jan 1, 1965
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Institute of Metals Division - Crack Nucleation and Growth in High Strain-Low Cycle FatigueBy A. J. McEvily, R. C. Boettner, C. Laird
The processes leading to fatigue failure in the low-cycle range were studied to obtain an understanding of the basis of Coffin's law. Particular attention was paid to the manner of mack nucleatio
Jan 1, 1965
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Institute of Metals Division - Crack Propagation in Air and in Vacuum for Nickel and a Nickel- Chromium-Aluminum AlloyBy R. J. Sherman, M. R. Achter
Creep rates have been measured for nickel at 1200°F in air and in vacuum, and related to the depth of surface cracks in the specimens tested in the two environments. The surface cracks were observed t
Jan 1, 1962
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Institute of Metals Division - Crack Propagation in the Hydrogen-Induced Brittle Fracture of SteelBy A. R. Troiano, W. J. Barnett
IN recent years the demands of space limitations and increased loads, particularly in the aircraft industry, have accelerated the trend toward utilization of ultra-high strength steels. The increased
Jan 1, 1958
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Institute of Metals Division - Crack Suppression by a Fine-Grained Surface Layer During Creep of Nickel (TN)By R. J. Sherman, M. R. Achter
IT has often been reported that coatings may strengthen single crystals and polycrystalline specimens of coarse grain size. This note reports the effect of a surface layer of fine grains on the creep
Jan 1, 1962
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Institute of Metals Division - Crack, Slip Band InteractionBy S. Wiederhorn
The energy and force of interaction between a crack and a slip band have been calculated. When the distance between the crack and the slip band is greater than the dislocation spacing of- the slip ban
Jan 1, 1962
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Institute of Metals Division - Creep and Creep-Rupture Relationships in an Austenitic Stainless SteelBy W. F. Domis, F. von Gemmingen, R. W. Whitmore, F. Garofalo
Constant-load creep-rupture tests at 1100°, 1300° and 1500°F were made on a Type-316, 18 Cr-8 Ni-ZMo, austenitic stainless steel to determine the relationship between ruptzire life and other aspects o
Jan 1, 1962
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Institute of Metals Division - Creep and Grain Boundary Sliding in Aluminum-3 Pct Copper AlloyBy N. J. Grant, A. W. Mullendore, Y. Ishida
Creep tests were performed at 500°F on polished specimens of A1-3 pct Cu at stresses of 2000, 4000, and 6000 psi. The effects of the size and distnbution of the second phase were studied in connectio
Jan 1, 1964
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Institute of Metals Division - Creep and Stress Rupture Behavior of Aluminum as a Function of PurityBy Nicholas J. Grant, Italo S. Servi
Extensive data of minimum creep rates and rupture times for high purity and commercial aluminum confirm the existence of a transition range from the low temperature-type to the high temperature-type b
Jan 1, 1952
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Institute of Metals Division - Creep Behavior of Extruded Electrolytic MagnesiumBy C. S. Roberts
The creep mechanism and kinetics of fine-grained magnesium have been studied over the temperature range 200' to 600°F. As a result of a photographic study of microstructural changes, transient an
Jan 1, 1954
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Institute of Metals Division - Creep Behavior of Magnesium-Cerium AlloysBy C. S. Roberts
Four binary alloys in this system were creep tested at 300°' to 600°F. A photographic study of microstructural changes showed that the outstanding creep resistance results primarily from a potent
Jan 1, 1955