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Institute of Metals Division - Internal Friction Studies on Silver and Certain Silver-Base Solid Solutions
By J. H. Frye, S. G. Holder, E. E. Stansbury
Internal friction studies on annealed and cold-worked pure silver and alloys of silver with 4.5 atomic pct each of Cd, Sn, and Sb are reported. Small amounts of cold work, introduced by stretching pur
Jan 1, 1957
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Institute of Metals Division - Internal Grain Boundary Sliding During Creep
By Nicholas J. Grant, Yoichi Ishida, Arthur W. Mullendore
An inert particle -marker technique was developed to provide a direct measurement of grain boundary sliding during creep in tile interior of aluminum specimens. Groin boundary sliding in the interior
Jan 1, 1965
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Institute of Metals Division - Internal Oxidation in Iron-Chromium-Yttrium Alloys (TN)
By Edward J. Felten
THE oxidation resistance of chromium and Fe-Cr alloys is increased by small additions of yttrium or other rare earth metals.1,2 In addition, the presence of the additives increases the resistance of t
Jan 1, 1962
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Institute of Metals Division - Internal Oxidation of Copper-Aluminum Alloy
By D. L. Wood
This investigation was concerned with the aluminum-oxide particle dispersions, the mechanical properties, and the re-c,uystallization characteristics of some internally oxidized copper-aluminum alloys
Jan 1, 1960
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Institute of Metals Division - Interpretation of Flow Mechanisms During Rolling in Fcc Metals
By Y. C. Liu
An analysis is presented to show that the formation of rolling textures in fcc metals can be rationalized in terms of flow mechanisms operative during the rolling process. First, a general approach
Jan 1, 1964
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Institute of Metals Division - Interpretation of the Rolling Texture of Copper
By Paul A. Beck, M. N. Parthasarathi
By determining the (220) pole figure for OFHC copper rolled to 96 pct R. .A., the occurrence of four texture components of the type (135) [211] was confirmed. It was found that the total volume fracti
Jan 1, 1962
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Institute of Metals Division - Intragranular Precipitation of Intermetallic Compounds in Complex Austenitic Alloys
By W. C. Hagel, H. J. Beattie
Seven austenitic alloys of varions base compositions and minor-alloy additions were solution-treated, aged systematically between 1200oand 1800oF, and examined by X-ray and electron metallography. Int
Jan 1, 1962
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Institute of Metals Division - Inverse Segregation in Aluminum-Zinc Ingots
By D. R. Colton, W. V. Youdelis
The maximum segregation, as a function of alloy composition, is calculated for the aluminum-zinc system using the theory of inverse segregation based on the mechanism of volume contraction and interde
Jan 1, 1961
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Institute of Metals Division - Investigation of Alloys of the System PbTe-SnTe
By Irving B. Cadoff, Alvin A. Machonis
The resistivity, Hall coefficient, Seebeck coefficient, and thermal conductivity were measured as a function of temperature for cation-rich alloy single crystals covering the composition range across
Jan 1, 1964
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Institute of Metals Division - Investigation of Room-Temperature Slip in Zone-Melted Tungsten Single Crystals
By R. G. Garlick, H. B. Probst
Tungsten single-crystal specimens of various orientations were deformed in tension at room temperature. Slip traces indicated both (112)(111) and (110) (111) slip; however, about 10 pct plastic dejorm
Jan 1, 1964
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Institute of Metals Division - Investigation of Temper Brittleness in Low-alloy Steels
By S. A. Herres, A. R. Elsea
Temper brittleness refers to the loss in the notched-bar impact resistance encountered in most medium- or low-alloy steels when they are tempered within the temperature range of 700 to ll00°F or slowl
Jan 1, 1950
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Institute of Metals Division - Investigation of the Effects of Solutes on the Grain Boundary Stress Relaxation Phenomenon
By E. S. Machlin, S. Weing
GRAIN boundary stress relaxation has been the subject of several investigations in recent years, but as yet the phenomenon is not well understood. One of the major difficulties has been the lack of a
Jan 1, 1958
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Institute of Metals Division - Investigation of the Grain Coarsening Behavior of Some Aluminum Alloys
By H. Bernstein
Grain coarsening tests were carried out on AI-4.5 pct Cu and AI-4.5 pct Si alloys. The effects of three variables, melt composition, pour temperature, and mold temperature, were determined. It was fou
Jan 1, 1955
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Institute of Metals Division - Investigation of the Heat Treatment of Commercial Titanium-Base Alloys (Discussion page 1326)
By L. Luini, E. Lee
An exploratory survey of the heat treatment response of commercial titanium alloys (Ti-150A, RC-130B, and MST 3AI-5Cr al-loys) shows a wide range of possible hardness and microstructural characteristi
Jan 1, 1955
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Institute of Metals Division - Investigation of the Partial Constitution Diagram Ti-TiAu2
By Pol Duwez, Ellis P. Frink, Paul Pietrokowsky
Ti-Au alloys in the composition interval 0 to 66 213 atomic pct Au have been studied over a temperature range from 400° to 1500°C. A partial phase diagram has been established from micrographic and ma
Jan 1, 1957
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Institute of Metals Division - Investigation of the Vanadium-Manganese Alloy System
By R. M. Waterstrat
The phases occurring in the V-Mn system were studied by means of X-yay diffraction and metallo-paphic techniques, using are-melted alloy specimens annealed in the temperature range 800° to 1150°C and
Jan 1, 1962
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Institute of Metals Division - Iodide Columbium
By R. F. Rolsten
The preparation of pure metals by the thermal decomposition of volatile halides was developed byde boer' and van Arkel.2 This has proved to be a useful technique for the refining of columbium,the
Jan 1, 1960
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Institute of Metals Division - Ionic Disorder in Manganous Oxide (TN)
By C. E. Birchenall
DaVIES and Richardson1 have measured composition changes for Mn1-Owith variation in the equilibrium partial pressure of oxygen at 1500°, 1575°, and 1650°C, where 6 is the deviation from the simple sto
Jan 1, 1961
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Institute of Metals Division - Iron Alumina Materials
By A. Gatti
Studies were made on the system iron plus alumina. Various methods of dispersing and various amounts of alumina were used. Powder metallurgy techniques were used to produce the final product. Micr
Jan 1, 1960
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Institute of Metals Division - Iron-Carbon Phase Diagram: Isobaric Sections of the Eutectoid Region at 35, 50 and 65 Kilobars
By J. E. Hilliard
Isobaric sections of the eutectoid region of the iron-carbon phase diagram have been exgerimentally determined at 35, 50, and 65 kb. The phase boundaries were located by metallographic analysis of sp
Jan 1, 1963