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Institute of Metals Division - A Method of Examination of Sections of Fine Metal Powder Particles with the Electron MicroscopeBy Laurence Delisle
The aim of this paper is the description of a technique to be applied to the study of sections of metal powder particles, less than 20 microns in diam. with the electron microscope, by the replica met
Jan 1, 1950
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Institute of Metals Division - A Microplasticity Study of Dispersion Strengthening in TD- NickelBy R. D. Carnahan, J. E. White
A study of dispersion strengthening in TD-Nickel (nickel plus 2 vol pct Tho2) was conducted employing microstrain techniques at ambient room temperature. It was found that optimum strength was due pri
Jan 1, 1964
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Institute of Metals Division - A Modified X-Ray Diffraction Microscope Technique for Study of Dislocations in CrystalsBy C. H. Ma, J. S. Makris
This paper describes a modified X-ray diffraction microscope wzethod based on the general principles of Berg-Bawett's Method, Lang's Method, and Woosters1 Technique. This new method may be u
Jan 1, 1964
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Institute of Metals Division - A Mutual Solid Solubility Scale for MetalsBy Y. L. Yao
A scale based on existing data for the mutual solid solubilities of metals in binary systems has been compiled. This scale is useful for estimating the relative magnitude of two solubilities, provide
Jan 1, 1961
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Institute of Metals Division - A New Analysis of the Diffusion of Hydrogen in Iron and Ferritic SteelsBy P. K. Foster, A. McNabb
A consideration of the literature shows the inadequacy of Fick's Laws to describe the diffusion of hydrogen in steels below 400°C. These laws are modified an the assumption that hydrogen is dela
Jan 1, 1963
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Institute of Metals Division - A New Electron-Microscopic Technique for Studying Metal SurfacesBy N. A. Tiner, Saara Asunmaa
The early stages of nucleation of vacuunz-deposited gold coatings on electropolished surfaces of pure nickel and binary alloys of Ni-A1 and Ni-Ti have been studied, employing carefully controlled temp
Jan 1, 1964
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Institute of Metals Division - A New High-Temperature Form of the Intermetallic Compound CO3V (TN)By E. T. Peters, L. E. Tanner
In the course of a study concerned with the rnechanical behavior of the intermetallic compound CO3V, both structural observations and anomalous electrical-resistivity behavior indicated the presence o
Jan 1, 1965
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Institute of Metals Division - A New Method to Test Steel for Temper Brittleness (TN)By Abdul-Fattah K. Kaddou, P. C. Rosenthal
THE authors have studied the problem of temper brittleness in steel1 employing an internal friction method. The specimens are in the form of wire, 14 B and S gage (0.064 in diam), 6 in. long. It wa
Jan 1, 1961
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Institute of Metals Division - A New Theory of Work HardeningBy D. Kuhlmann-Wilsdorf
A new theory of work hardening is developed which rests on only a few simple principles and is applicable to a wide variety of materials and dislocation structures. It explains, qualitatively, the gen
Jan 1, 1962
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Institute of Metals Division - A Note on the Pd-B System (TN)By W. M. Lehrer
RECENT development of high-temperature brazing alloys has required information regarding the eutec-tic temperature and composition of the Pd-rich section of the Pd-B system.. Literature on this subje
Jan 1, 1960
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Institute of Metals Division - A Preliminary Investigation of the Zirconium-Beryllium System by Powder Metallurgy MethodsBy H. H. Hausner, H. S. Kalish
IN recent years zirconium and beryllium have become of great interest because of their special properties. Zirconium is known for its remarkable ability to absorb the gases oxygen, nitrogen and hydrog
Jan 1, 1951
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Institute of Metals Division - A Preliminary Investigation of the Zirconium-Beryllium System by Powder Metallurgy Methods - DiscussionBy H. H. Hausner, H. S. Kalish
M. Hansen—This paper certainly is an interesting study. Although I have not had too much experience in the powder metallurgical methods of studying phase equilibria, I would like to say the following
Jan 1, 1951
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Institute of Metals Division - A Proposed Mechanism for the Strengthening of SAP-Type Alloys (TN)By G. S. Ansell
RCENTLY, in investigating the high-temperature creep properties of an aluminum, SAP-type alloy, MD 2100, fabricated by Professor F. V. Lenel of Rensselaer Polytechnic Institute, Ansell and Weertman1 f
Jan 1, 1960
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Institute of Metals Division - A Quantitative Measure of Temper EmbrittlementBy N. Brown
From the theories of flow and fracture it is shown that the difference in reciprocals of the transition temperatures (OK) is a quantitative measure of temper ernbrittlement. Experimental data are give
Jan 1, 1955
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Institute of Metals Division - A Quantitative Measurement of the Fraction of Tensile Strain Due to Twinning in Polycrystalline Zirconium at 77°KBy E. R. Buchanan, R. E. Reed-Hill, F. W. Caldwell
Poly crystalline zirconium tensile specimens containing a sizable fraction of grains unfavorably oriented for slip were deformed at 77°K to strains as high as 9 pct. The contributions of the various t
Jan 1, 1965
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Institute of Metals Division - A Rapid Technique for Observation of Three-Dimensional Microstructures: Application to Analysis of Fault structure in Eutectic AlloyBy Richard H. Hopkins, R. W. Kraft
A new technique facilitating the rapid determination of the three-dimensional morphology of phases suspended in an opaque matrix is described. The vapidity of the technique is based upon continuous ci
Jan 1, 1965
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Institute of Metals Division - A Rationalization of Measured High Temperature Properties of Fe-Cr-Co-Ni AlloysBy W. R. Hibbard, J. D. Nisbet
The high temperature properties of Fe-Cr-Co-Ni base alloys and the effects of hardening element additions on these properties are rationalized on the basis of general principles of alloying. DURING
Jan 1, 1954
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Institute of Metals Division - A Rationalization of the Data on Grain Boundary Migration in Zone-Refined Metals as Influenced by Dissolved ImpuritiesBy Paul Gordon
It is shown that equations for grain-boundary migrntion given by Gordon and Vandermeer, based on a theory first advanced quantitatively by Lucke and Detert, satisfactorily explain recent data on both
Jan 1, 1963
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Institute of Metals Division - A Re-Evaluation of the Iron-Rich Portion of the Fe-Ni SystemBy R. E. Ogilvie, J. I. Goldstein
The a and y solubility limits in the Fe-Ni phase diagram have been redetermined at temperatures above 500°C. Both a diffusion-couple and a quench and anneal technique were used. The solubility limits
Jan 1, 1965
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Institute of Metals Division - A Reanalysis of Data on the Solution-Precipitation Stage of Liquid- Phase SinteringBy J. H. Brophy, A. L. Prill, H. W. Hayden
An error lzas been found in the conventional way of determining the time exponent of linear shrinkage for the solution-precipitation stage of liquid-phase sintering. Large amounts of shrinkage due to
Jan 1, 1965