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Part VII - Papers - Faulting in Cold-Worked Fe-Si Alloy FilingsBy C. N. J. Wagner, E. N. Aqua
Dilute Fe-Si alloys (0 to 5 wt pet Si) were cold-worked by making filings at room temperatuve. The analysis of the broadening of the X-vay powdev pattern peaks yields anisotropic particle sizes normal
Jan 1, 1968
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Institute of Metals Division - Effects of Sintering on the Physical and Mechanical Properties of Arc Plasma-Sprayed TungstenBy G. W. Form, W. A. Spitzig
The effects of hydrogen and vacuum shtering treatments on the physical and mechanical properties of arc plasma-sprayed tungsten were inuestigated. Temperatures examined ranged from 3000" to 4000°F in
Jan 1, 1964
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Institute of Metals Division - Effects of Solid Solution Alloying on the Cold-Rolled Texture of TitaniumBy J. P. Hammond, C. J. McHargue, S. E. Adair
Cold-rolled sheet textures have been determined for binary solid solutions of aluminum, columbium, tantalum, and zirconium in titanium. An alloy containing 3.8 pct Al had a (0002) [10101 texture, wher
Jan 1, 1954
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Technical Notes - Eutectoid Decomposition of the Delta Phase of the Copper-Tin SystemBy M. Hansen, C. C. Wang
THE 6 phase of the Cu-Sn system (Cu,Sn, = 32.53 pct Sn) was considered to be stable down to room temperature until Owen and Iball showed by X-ray analysis that it undergoes a eutectoid decomposition i
Jan 1, 1952
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Institute of Metals Division - Secondary Recrystallization in CopperBy F. H. Wilson, M. L. Kronberg
The low temperature recrystalliza-tion of very heavily rolled copper produces a fine grained structure with a high degree of preferred orientation. Additional heating to within a few hundred degrees o
Jan 1, 1950
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Institute of Metals Division - Rare-Earth Gallium Compounds Having the Aluminum-Boride Structure (TN)By S. E. Haszko
SEVERAL new XGa2 intermetallic compounds, Table 1, where X is a rare earth, having the AlB, structure were prepared as part of a continuing study of the magnetic and structural properties of rare-eart
Jan 1, 1962
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Institute of Metals Division - Crystallographic Angles in Tetragonal Crystals: B-Tin and Indium (TN)By B. W. Veal, B. S. Chandrasekhar
THE Laue method of orienting single crystals requires the use of tables of angles between crystal-lographic planes, and between zone axes. Such tables have been published for cubic crystals, and so
Jan 1, 1962
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Symposia - Symposium on Creep of Nonferrous Metals and Alloys - Creep Properties of Some Rolled Lead-antimony Alloys - DiscussionBy H. E. Howe, A. A. Smith
E. Schumacher.*—Mr. Smith has shown us once again how variable lead alloys can be. I have studied lead alloys for a good many years and know from experience that their behavior cannot be predicted by
Jan 1, 1945
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Growing Import of State Geological SurveysBy George C. Branner
STATE geological surveys have had an interesting development in this country. They first appeared more than a hundred years ago. The fact that they have persisted and are now an important part of most
Jan 1, 1941
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Coal - Chlorine in Coals of the Illinois BasinBy H. J. Gluiskoter
The chlorine content of the coals in the Illinois Basin ranges from 0.00% to more than 0.60%. The chlorine content of the Herrin (No. 6) Coal has been mapped on a regional scale and, in general, incre
Jan 1, 1968
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Papers - Crystallography of Austenite Decomposition (T.P. 1212, with discussion)By Alden B. Greninger, Alexander R. Troiano
Metallurgists have long believed that martensite in steel forms as plates along the octahedral {111} planes of austenite. Much has been written about mechanisms whereby units of the austenite lattice
Jan 1, 1940
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Papers - Crystallography of Austenite Decomposition (T.P. 1212, with discussion)By Alden B. Greninger, Alexander R. Troiano
Metallurgists have long believed that martensite in steel forms as plates along the octahedral {111} planes of austenite. Much has been written about mechanisms whereby units of the austenite lattice
Jan 1, 1940
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Oxygen In Liquid Open-Hearth Steel-Oxygen Content During The Refining PeriodBy B. M. Larsen, T. E. Brower
IN an earlier paper1 we discussed a simple, rapid method of taking samples of liquid steel and analyzing them for oxygen, which, though possibly not absolutely accurate (as is likewise true of all oth
Jan 1, 1946
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Part VI – June 1968 - Papers - Solubility and Permeability of Sulfur in Alpha IronBy W. H. Herrnstein, F. H. Beck, M. G. Fontana
Sulfur solubility in a iron was measured in the 750 to 890°C temperature range and was found to be insensitive to ferrite purity within a limited composition range. The permeability of sulfur in ferr
Jan 1, 1969
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Coal And The Electrical Utilities In The WestBy Arnold E. Lamm
The author addressed a keynote session for all divisions at last October's SME Fall Meeting in Phoenix, Ariz. Discussing the competition from gas, oil, hydroelectric and atomic energy, he said th
Jan 11, 1965
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ErrataJan 1, 1951
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Institute of Metals Division - Intermetallic Compounds in the System Molybdenum-BerylliumBy James A. McGurty, Walter J. Koshuba, Samuel G. Gordon, Gilbert E. Klein
ONE of the problems encountered in working with metals at elevated temperatures is the instability resulting from solid-solid diffusion at a -common interface. A determination of the nature and magnit
Jan 1, 1952
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Institute of Metals Division - Effects on Impurity Content of Cropping Directionally Frozen Ingots (TN)By Leonard R. Weisberg
HE procedure of directional freezing by the Bridgman technique1 is frequently used in crystal preparation. On those occasions where the crystal is regrown, it can be advantageous to Crop part of the i
Jan 1, 1962
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Part VII - Papers - The Plastic Deformation of Single Crystals of Vanadium at 298° and 77°KBy D. M. Boulin, E. S. Greiner
Single crystals of vanadium were bent at 293" and 77°K to a maximum fiber strain of about 1 pct. Analysis of slip line and etch markings of- crystals deformed at either temperature show the slip plane
Jan 1, 1968
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PART VI - Communications - Permeation of Hydrogen and Deuterium in Alpha IronBy O. D. Gonzalez
ThIS communication presents the results of a determination of the permeabilities of hydrogen and deuterium in a iron from 360° to 560°C. Recently Heu-mann and primas' have given values of the dif
Jan 1, 1968