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Effect Of Composition On Grain Growth In Aluminum-Magnesium Solid SolutionsBy Louis J. Demer, Paul A. Beck
As reported in a previous publication,1 isothermal grain growth in high purity aluminum and in an aluminum alloy with 2 pct magnesium can be adequately described by means of the empirical relation: [
Jan 1, 1948
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RI 4292 Investigation Of The Krueger Zinc Deposit Washington County. Mo.By Homer J. Ballinger
The Krueger property was examined by an engineer of the Bureau of Mines in September 1943. The records of 23 old drill holes indicated an appreciable body of ore without delimiting the deposit. It app
Jan 1, 1948
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The Transformation Of CobaltBy J. L. Tokich, A. R. Troiano
INTRODUCTION SINCE 1921, when Hull' discovered that cobalt can exist in the face-centered cubic and hexagonal close-packed modifications, the transitions that occur in cobalt have been extensi
Jan 1, 1948
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Technical Papers and Discussions - Microstructure; Diffusion; Atmospheres - The Effect of Cobalt on the Rate of Nucleation and the Rate of Growth of Pearlite (Metals Tech., Aug. 1947, T. P. 2211)By M. F. Hawkes, R. F. Mehl
The rate of isothermal transformation of austenite to pearlite depends upon the rate of nucleation, N, and the rate of growth, G, of pearlite in austenite. Values of N are given in terms of the number
Jan 1, 1948
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RI 4170 Lead, Zinc, Silver. Copper, Bismuth Deposits, South Hecla Mine, Alta. Salt Lake County, UtahBy John I. Kasteler, John H. Hild
"INTRODUCTION The South Hecla mine, one of the principal mines of the Alta United Mines Co., is situated at Alta in thee Little Cottonwood mining district, about 30 miles southeasterly from Salt Lake
Jan 1, 1948
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Discussion - Discussion, Institute Of Metals DivisionCONTENTS [The Nature of Strain Markings in Alpha Brass (paper by J. E. BURKE and C. S. BARRETT, Met. Tech. Feb. 1948. TP 2327). ......................... 2 X Ray Studies of Twinning and Untwinn
Jan 1, 1948
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RI 4385 Investigation Of Vial Zinc Mine, Iowa County, Wis.By Alvin M. Cummings
During the period from June to September 1943, the Bureau of Mines undertook an investigation of the Vial mine, near the village of Linden I in Iowa County, Wis., as part of a general investigation of
Jan 1, 1948
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Production Engineering - Preventing Corrosion in Gas-condensate Wells (TP 2229, Petr. Tech., July 1947)By P. L. Menaul, P. P. Spafford
This paper discusses the most dangerous form of corrosion encountered in condensate-well oil production, the discovery of the agent causing this corrosion and the remedial chemical treatment proved ef
Jan 1, 1948
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The Oxidation Of Chalcocite In Air Compared With Its Oxidation In Pure OxygenBy Curtis L. Graversen, J. H. Hamilton, John C. Nixon, John R. Lewis
RECENTLY there has been much speculation concerning the advantages of using oxygen enriched air or pure oxygen in pyrometallurgical processes. The advantage of using oxygen in the iron blast furnace a
Jan 1, 1948
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Equilibrium Relations In Aluminum-Sodium Alloys Of High PurityBy W. L. Fink, H. C. Stumpf, L. A. Willey
VERY few studies of the aluminum-sodium system have been reported. Heycock and Neville1 were unable to detect any solubility of sodium in liquid aluminum. Mathewson2 prepared an equilibrium diagram co
Jan 1, 1948
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Discussion - Discussion, Iron And Steel Division - X Ray Determination Of Retained Austenite By Integrated Intensities - Averbach, B. L., Cohen, M.By B. R. Queneau
[ ] B. R. QUENEAU-One of the difficulties in metallurgy has always been a lack of precision in measurement, and I think the authors are to be congratulated on developing a method which will give us
Jan 1, 1948
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Technical Papers and Discussions - Microstructure; Diffusion; Atmospheres - Austenite Grain Size in Cast Steels (Metals Tech., June 1947, T. P. 2170, with discussion)By M. F. Hawkes
Austenite grain size has long been recognized by metallurgists as an important property of steels because of its influence on toughness, hardenability, ma-chinability and creep strength. Much research
Jan 1, 1948
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Effect Of A Dispersed Phase On Grain Growth In A1-Mn AlloysBy M. L. Holzworth, Philip R. Sperry, Paul A. Beck
INTRODUCTION THE basic work of Z. Jeffries1,2,3 has long ago established the main features of grain growth in the presence of a dispersed second phase. Working with sintered specimens of initially
Jan 1, 1948
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RI 4171 Resume of Bureau of Mines Research and Development Work on Western Coals 1942-47By V. F. Parry
"INTRODUCTION During the war period the Bureau of Mines expanded its investigations on western coals principally in connection with Investigations of raw material resources for western steel productio
Jan 1, 1948
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RI 4336 Zinc Smelting In The Horizontal Retort Fired With Natural Gas 4. Burner DesignBy G. L. Oldright
As a rule, the usual zinc retort smelter fired with natural gas made its own burners, of which there might be 300 per block, out of standard pipe fit-tings. The gas was discharged through a feeder pip
Jan 1, 1948
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RI 4337 Investigation Of Melrose Zinc-Lead District Ottawa County, Okla., And Cherokee County, Kans.By Clinton C. Knox
To demonstrate the feasibility of unwatering ore reserves previously indicated in the virgin Melrose zinc-lead field in Kansas and Oklahoma, the Bureau of Mines .carried through a pumping project on t
Jan 1, 1948
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RI 4256 Investigation Of Arkansas Bauxite ? Volume VI (Deposits in N 1/2, T. 1 S., R. 12 W., Cont?d)By M. C. Malamphy
A general description of the activities and results of bauxite investigation by the Bureau of Mines at its bauxite project in Saline and Pulaski Counties, Ark., has been given in Report of Investigati
Jan 1, 1948
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RI 4375 Missouri Valley Manganese Deposits. South Dakota Part I. - General Investigations, Stratigraphic Studies, And Tonnage And Grade EstimatesBy Paul. E. Pesonen
Since early in 1940 the Bureau of Mines has been concerned with possible means of utilizing manganese-bearing materials from the Missouri Valley manganese deposit. During the period between July 1945
Jan 1, 1948
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RI 4274 Cranberry Magnetite Deposits Avery County, N. C., And Carter County, Tenn.By M. H. Kline
The Cranberry magnetite deposits occur in pre-Cambrian granite-gneiss, in a belt extending from 3 miles southeast of Cranberry, N. C., to about 6 miles southwest of Magnetic City, Tenn. The belt forms
Jan 1, 1948