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Institute of Metals Division - Plastic Deformation of Germanium and Silicon by TorsionBy E. S. Greiner
Germanium and silicon have been plastically deformed in torsion at elevated temperatures. Slip took place on the four {Ill} planes. Dislocations, revealed by etch pits on a (111) face, occurred in row
Jan 1, 1956
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Institute of Metals Division - Plastic Deformation of Germanium by AlloyingBy W. J. Feuerstein
Plastic deformation of the germanium adjacent to the re-growth material has been observed after alloying single crystal germanium with tin. Of several solder alloys investigated, plastic deformution
Jan 1, 1961
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Institute of Metals Division - Plastic Deformation of Iron Between 300° and 77.2° KBy D. F. Gibbons
THIS investigation was undertaken in order to gain further information on the mechanism of plastic deformation of iron at temperatures between room temperature and 77.2°K, and also to contribute to ou
Jan 1, 1954
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Institute of Metals Division - Plastic Deformation of Magnesium Single CrystalsBy E. C. Burke, W. R. Hibbard
Plastic deformation in magnesium single crystals was studied by tensile tests at room temperature utilizing an improved preparation and testing technique. Consistent critical resolved shear stress val
Jan 1, 1953
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Institute of Metals Division - Plastic Deformation of Magnesium Single Crystals - DiscussionBy E. C. Burke, W. R. Hibbard
G. B. Craig (University of Toronto, Toronto, O,nt., Canada)—The advent of pyramidal slip at room temperatures in a magnesium crystal (M2,) and the very low value reported for the critical shear stress
Jan 1, 1953
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Institute of Metals Division - Plastic Deformation of Oriented Gold Crystals (TN)By Y. Nakada, U. F. Kocks, B. Chalrners
THE orientation dependence of work hardening has previously been studied over the entire range, i.e., including special orientations of high symmetry, in aluminum1-3 and silver.* The differences betwe
Jan 1, 1964
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Institute of Metals Division - Plastic Deformation of Rectangular Zinc MonocrystalsBy J. J. Gilman
The data presented indicate that the critical shear stress and strain-hardening Thedatapresentedrate of a zinc monocrystal depend on the orientation of its slip direction with respect to its external
Jan 1, 1954
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Institute of Metals Division - Plastic Deformation of Silicon Semiconductor Crystals (TN)By J. L. Stokes, L. J. Demer
It has recently been shown' that epitaxial films of silicon carbide deposited on silicon single crystals possess desirable properties for semiconductor applications. There is one apparent disadva
Jan 1, 1965
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Institute of Metals Division - Plastic Deformation of Silver and Silver-Gold Alloy Single CrystalsBy B. Ramaswami, U. F. Kocks, B. Chalmers
This paper describes the tempetrature, solute (gold), and orientalion dependence of the plastic rleforlirnlion of silver single crystals. The virgin flow stress, To, and its temperatutre dependence in
Jan 1, 1965
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Institute of Metals Division - Plastic Deformation of Single Crystals of CopperBy J. N. Hobstetter, J. J. Becker
Slip lines in deformed copper single crystals exhibit very pronounced cross-slip and clustering if the stress axes are not too far from <100>. This orientation dependence seems to persist whether or n
Jan 1, 1954
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Institute of Metals Division - Plastic Stress-Strain Relations for Aluminum Alloy 14s-T6 Subjected to Combined Tension and TorsionBy J. Marin, H. A. B. Wiseman
This paper presents results of an experimental study dealing with the plastic stress-strain relations of aluminum alloy 14s-T6 subjected to combined biaxial tension and compression stresses. Plastic s
Jan 1, 1954
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Institute of Metals Division - Plastic-Replica Methods Applied to a Study of Fatigue Crack Propagation in Steel 35 CD 4 and 26 St Aluminum AlloyBy R. C. de Lange
An improved replica technique is developed for a nondestructive study of the nucleation and growth of fatigue cracks. Three different growth stages of a fatigue crack were observed. An initial stage
Jan 1, 1964
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Institute of Metals Division - Plasticity of Columbium Single CrystalsBy N. K. Chen, R. Maddin
Columbium single crystals were deformed in tension and compression. Reorientation by X-rays and stereographic projections of slip traces indicate that plane of slip may be considered as (110). The pla
Jan 1, 1954
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Institute of Metals Division - Plasticity of Molybdenum Single CrystalsBy N. K. Chen, R. Maddin
In the extension of molybdenum single crystals at room temperature, the slip planes were found to be of the type (1101; the slip direction <111>. Theories of plasticity of body-centered cubic metals h
Jan 1, 1952
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Institute of Metals Division - Plasticity of Molybdenum Single Crystals at High TemperaturesBy N. K. Chen, R. Maddin
Single crystals of molybdenum were extended at temperatures from 1300° to 2500°C. It was found that with increasing temperatures, the yield becomes more pronounced and the number of slip bands for equ
Jan 1, 1955
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Institute of Metals Division - Polygonization of Rock Salt (TN)By Charles L. Bauer
WHEN a single crystal is annealed following plastic deformation recrystallization usually occurs rather than polygonization. Consequently, re-crystallization has received the overwhelming amount of at
Jan 1, 1965
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Institute of Metals Division - Porosity in Formed TitaniumBy R. A. Wood, R. I. Jaffee, H. R. Ogden, D. N. Williams
Strain-induced porosity has been found to occur in titanium and other materials at tensile strains greater than the uniform elongation of the material. Porosity in titanium increases with increasing s
Jan 1, 1960
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Institute of Metals Division - Possible Coexisting Order and Disorder in Fe3Al (TN)By A. U. Seybolt
RECENTLY, cases of coexisting ordered and disordered phase equilibria have been reported among face-centered cubic metals,1"3 but not on body-centered cubic systems.4 McQueen and Kuczynski5 showed
Jan 1, 1961
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Institute of Metals Division - Powder Metallurgy of ZirconiumBy Roswell P. Angier, Herbert S. Kalish, Henry H. Hausner
POWDER metallurgical methods as applied to zirconium are of great interest because they permit not only the fabrication of parts directly to shape with a minimum loss of material but also the utilizat
Jan 1, 1952
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Institute of Metals Division - Precipitation from Martensitic Solid Solutions of Ti-Cu AlloysBy R. Taggart, D. H. Polonis, W. C. Gallaugher
In the Ti-Cu system, the a' phase can be produced over a wide range of alloy composition witJwut the retention of measurable amounts of the ß or ? phases. This paper reports on the decomposition
Jan 1, 1965