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Institute of Metals Division - Deformation and Fracture of Magnesium BicrystalsBy J. D. Mote, J. E. Dorn
This investigation was undertaken to study the effects of piledup arrays of dislocations on inducing slip, twinning, and fracturing in magnesium bicrystals. A series of variously oriented bicrystals o
Jan 1, 1961
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Institute of Metals Division - Deformation and Fracture of Polycrystalline CadmiumBy N. S. Stoloff, M. Gensamer
The effects of temperature, grain size, and magnesium content on the strength and ductility of cadmium were studied in the range -269° to 23 °C. A sharp drop in ductility between -140° and -190°C mark
Jan 1, 1963
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Institute of Metals Division - Deformation Behavior of Zone -Melted Tungsten Single CrystalsBy H. W. Schadler
Single crystals of tungsten, which were grown by electron bombardment floating zone refining, were strained 2 pet in tension and bending at 298°, 77°, and 20°K to determine the modes and crystallograp
Jan 1, 1961
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Institute of Metals Division - Deformation Characteristics of an Iron-18 Pct Nickel Binary AlloyBy S. Floreen
Measurements have been mode of the effects of tempering and austenitizing heat treatments, the work-hardening characteristics, and the effects of test temperature and strain rate on the properties of
Jan 1, 1964
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Institute of Metals Division - Deformation Characteristics of Zinc Crystals with Polycrystalline Surface Layers (TN)By S. Feuerstein, J. M. Galligan
SURFACE effects in the deformation of metal single crystals have been noted by a variety of workers.' A large majority of these experiments have used surface roughening or a second chemical const
Jan 1, 1965
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Institute of Metals Division - Deformation Mechanisms and Work Hardening in RheniumBy A. T. Churchman
The deformation modes of rhenium have been identified as those typical of the hexagonal metals, titanium, zirconium, and beryllium whose c/a ratios, in common with rhenium, are less than ideal for clo
Jan 1, 1961
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Institute of Metals Division - Deformation Mechanisms in Alpha TitaniumBy S. R. Dunbas, D. C. Jillson, E. A. Anderson
THE present work was undertaken to furnish information, lacking in the literature, on the deformation mechanisms active in pure titanium at room temperature. Since it was started, Rosi, Dube, and Alex
Jan 1, 1954
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Institute of Metals Division - Deformation Mechanisms of Alpha-Uranium Single CrystalsBy L. T. Lloyd, H. H. Chiswik
The operative deformation elements in a-uranium single crystals under compression at room temperature have been determined as a function of the compression directions. The deformation mechanisms noted
Jan 1, 1956
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Institute of Metals Division - Deformation Modes of Zirconium at 77°, 575°, and 1075°By K. E. J. Rapperport, C. S. Hartley
The only slip system observed in zirconium crystals deformed at 77", 575", and 1075OK was (1010) [1210] with a critical resolved shear stress in tension of 1.0 kg per sq mm at 77°K; 0.2 kg per sq mm a
Jan 1, 1961
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Institute of Metals Division - Deformation of Tantalum Single CrystalsBy R. M. Rose, D. P. Ferriss, J. Wulff
Single crystals of tantalum were grown by multipass zone melting in an electron beam apparatus. Tension tests of these crystals at 4.2 x 10'* per sec-gave a resolved louler yield stress of 7300 p
Jan 1, 1962
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Institute of Metals Division - Deformation of Zinc Bicrystals by Thermal RatchetingBy J. E. Burke, A. M. Turkalo
IN 1923 Desch¹ pointed out that the grains in a metal which is anisotropic with respect to its thermal coefficient of expansion would contract differently upon cooling, and that the stresses developed
Jan 1, 1953
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Institute of Metals Division - Deformation Resulting from Grain Boundary SlidingBy N. J. Grant, H. Brunner
This paber is concerned with the determination of equations relating elongation to the amount of shear taking place both along grain boundaries and in slip planes of poly crystalline aggregates during
Jan 1, 1960
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Institute of Metals Division - Deformation Textures in Aluminum-Uranium AlloysBy W. C. Thurber, C. J. McHargue
THE deformation textures of metals have been extensively studied because of both the practical implications in metal fabrication and the fundamental insight into the behavior of the metal during defor
Jan 1, 1961
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Institute of Metals Division - Deformation Twinning in Copper Whiskers of [111] Orientation (TN)By M. N. Shetty
LARGE copper whiskers (-100 p) of 11111 orientation were tested in a floor-model Instron testing machine, at liquid nitrogen temperature. (Testing methods will appear elsewhere.) Whiskers deformed by
Jan 1, 1965
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Institute of Metals Division - Deformation Twinning in Hadfield SteelBy W. N. Roberts
Hadfielcl steel has been studied by transmission electron microscopy to determine the microsl.rtic-ture of the cold-worked material, which has been a subject of controversy for many years. The presen
Jan 1, 1964
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Institute of Metals Division - Delay Time in Single Crystals of Aluminum, Zinc, and IronBy I. R. Kramer
The delay time for single crystals of iron, zinc, and pre-strained aluminum was measured under conditions of high-speed deformation. The delay time of aluminum was found to be affected by the orienta
Jan 1, 1962
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Institute of Metals Division - Delayed Fractures in MartensiteBy Roman Šejnoha, Karel Mazanec
A pronounced tendency for delayed fracture zoas observed in the martensite structure of low-alloy steels in the as-quenched condition. Cracks of predominantly intercrystalline nature nucleated and pro
Jan 1, 1965
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Institute of Metals Division - Delayed Yielding in a Substitutional Solid Solution AlloyBy J. E. Dorn, L. A. Shepard
LOW and Gensamer' demonstrated a number of years ago that the yield point phenomenon in mild steels was associated with the presence of fer-rite soluble carbon or nitrogen. More recently the yiel
Jan 1, 1957
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Institute of Metals Division - Dendrite Morphology, Microsegregation and Homogenization of Low-Alloy SteelBy Merlon C. Flemings, Theodoulos Z. Kattamis
Examination was made of the distribution of tnanganese and nickel in colutrrnar dendrites of a cast low-alloy steel; more limited work was corzducted on chromium. Corresponding "segregrction ratios" w
Jan 1, 1965
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Institute of Metals Division - Densification and Kinetics of Grain Growth during the Sintering of Chromium CarbideBy W. G. Lidman, H. J. Hamjian
' I HE fabrication of many materials from powders involves a sintering process. A mass of powder will sinter because of the excess free energy over the same mass in the densified state caused by
Jan 1, 1954