Search Documents
Search Again
Search Again
Refine Search
Refine Search
- Relevance
- Most Recent
- Alphabetically
Sort by
- Relevance
- Most Recent
- Alphabetically
-
Institute of Metals Division - The Surface Tension of Solid Copper
By A. J. Shaler, H. Udin, J. Wulff
In the study of the sintering of meta powders, we have come to the conclusion in this laboratory that further progress requires a more basic understanding of the operating mechanisms. This is emphasiz
Jan 1, 1950
-
Institute of Metals Division - The Surface Tension of Solid Copper - Discussion
By H. Udin
G. KUCZYNSKI* and B. H. ALEXANDER*—This paper represents a most noteworthy attempt to evaluate experimentally the surface tension of a solid metal. Because of the great importance of such measurements
Jan 1, 1950
-
Institute of Metals Division - The System Chromium- Zirconium-Oxygen at 1200°, 1500°, and 1700°C
By Michael Hoch, Seong Kwan Rhee
The ternary system Zr-Cr-0 was investigated at 1200°, 1500°, and 1700°C. The isotherms at these temperatures were determined by metallographic and X-ray diffraction analysis of carefully selected allo
Jan 1, 1964
-
Institute of Metals Division - The System Chromium-Carbon
By N. J. Grant, D. S. Bloom
THE development of high temperature, high stress alloys had proceeded with such rapidity during the war, and for a short time afterward, that our knowledge of the constitution of the alloys had become
Jan 1, 1951
-
Institute of Metals Division - The System Chromium-Carbon - Discussion
By N. J. Grant, D. S. Bloom
P. Coheur and L. Habraken—We read this paper with great interest and are glad to congratulate the authors for their valuable work, supplying an important contribution to the mechanism of tempering on
Jan 1, 1951
-
Institute of Metals Division - The System In As-GaAs
By E. S. Lenker, H. J. Van Hook
A complete swies of solid solutions has been found between the compounds InAs and GaAs Below the solidus. The melting relations determined by differential thermal and static quenching technzques, in
Jan 1, 1963
-
Institute of Metals Division - The System Molybdenum-Titanium-Zirconium-Oxygen at 1500 "C
By Michael Hoch, Michel Desjardins
The isothermal section of the Mo-Ti-Zr-0 system at 1500°C was investigated using X- ray diffraction and mefallographic techniques. Up to 66.7 at. pct 0, the system contains ten four -phase regions. Is
Jan 1, 1962
-
Institute of Metals Division - The System Niobium (Columbium)-Titanium- Zirconium-Oxygen 373 at 1500°C
By Michael Hoch, Walter C. Wyder
The isothermul section of the Nb-Ti-Zr-O system at 1500°C was investigated using X-ray dzffraction and metallographic techniques. UP to 66.7 at. pct 0, the system contains nine four-phase regions. Tso
Jan 1, 1962
-
Institute of Metals Division - The System Tantalum-Titanium- Zirconium-Oxygen at 1500°C
By Michael Hoch, Daniel B. Butrymowicz
The isothermal section of the Ta-Ti-Zr-0 system at 1500°C was investigated using X-ray diffraction and rrzetallographic techniques. Up to 71.4 at, pct 0 the system contains nine four -phase regions. Z
Jan 1, 1964
-
Institute of Metals Division - The System Titanium- Zirconium-Oxygen
By Robert L. Dean, Michael Hoch, Samuel M. Wolosin, Chung K. Hwu
The general shape of the 1450°C isotherm of the Ti-TiO-ZrO2-Zr region was evaluated from the surrounding binary phase diagrams and from thermo-dynamic data on the metal-oxygen binaries. The phase boun
Jan 1, 1962
-
Institute of Metals Division - The Ta-W-Re System
By J. H. Brophy, M. H. Kamdar, J. Wulff
A constitutional diagram for the Ta-W-Re alloy system is presented. Rhenium dissolves in the complete range of solid solutions between tungsten and tantalum up to 48 wt pct in tantalum 'to about
Jan 1, 1962
-
Institute of Metals Division - The Tantalum- Zirconium Alloy System
By R. J. Jackson, D. E. Williams, W. L. Larsen
The phase diagram of the Ta-Zr system is presented with a discussion of the methods used in its determination. The solidus contains a minimum at 1820°C near 25 wt pet Ta. A complete solid solution
Jan 1, 1962
-
Institute of Metals Division - The Tantalum-Rhenium System
By P. Schwarzkopf, J. H. Brophy, J. Wulff
A constitutional diagram has been proposed for the tantalum-rhenium alloy system. Rhenium dissolved in tantalum up to 48 wt pct, and the maximum solubility of tantalum in rhenium is 5 wt pct. Intermed
Jan 1, 1961
-
Institute of Metals Division - The Temperature Dependence of the Microyield Points in Prestrained Magnesium Single Crystals
By D. E. Hartman, J. M. Roberts
A detailed study of the temperature dependence of the critical stress, TB . necessary to cause a damping loss of 1.41 x 10-6 g mm per mm3 in pre-strained magnesium single crystals has been carried out
Jan 1, 1964
-
Institute of Metals Division - The Tempering Characteristics of Some 0.4 Pct Carbon Ultra-high-Strength Steels
By B. G. Reisdorf
This paper describes the microstructural changes that occur when quenched ultrahigh-strength steels containing OA pet C and various amounts of nickel, silicon, and cobalt are tempered. The changes
Jan 1, 1963
-
Institute of Metals Division - The Tensile Fracture of Ductile Metals
By H. C. Rogers
A phenomenological study of the failure of polycry stalline ductile metals at room temperature was carried out using light and electron microscopy. Tensile fractures as well as sections of partially
Jan 1, 1961
-
Institute of Metals Division - The Ternary System Ti-Ta-C
By J. T. Norton, J. G. McMullin
An 1820°C isothermal cross section of the Ti-Ta-C ternary diagram was prepared from X-ray diffraction and metallographic data. No phases other than those appearing in the three binary diagrams were ob
Jan 1, 1954
-
Institute of Metals Division - The Ternary System, Copper-manganese-zinc.
By J. R. Long, C. E. Armantrout, A. H. Roberson, T. R. Graham
The preparation and fabrication of copper-manganese-zinc alloys and the evaluation of their engineering properties have for some time been an integral part of a research program of the Federal Bureau
Jan 1, 1950
-
Institute of Metals Division - The Texture and Mechanical Properties of Iron Wire Recrystallized in a Magnetic Field
By Vittal S. Bhandary, B. D. Cullity
Swaged iron wire has a cylindrical {001} <110> texture. The texture is also cylindrical after re-crystallization in the absence of a magnetic field, but <111> and <112> components are added to this te
Jan 1, 1962
-
Institute of Metals Division - The Textures of Cold-Rolled and Annealed Titanium
By H. T. Clark
NO previous determinations of the deformation or recrystallization textures of titanium or of titanium-base alloys have been reported in the literature. The room-temperature structure of titanium is h
Jan 1, 1951