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Embrittlement Of Uranium By Small Amounts Of Aluminum And IronBy W. C. Lilliendahl, H. W. Highriter
THE method developed and used in this laboratory for the production of metallic uranium of such purity that it is ductile and can be cold-worked to fine wire or thin sheet by rolling has already been
Jan 1, 1935
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Discussion[Contents AH-Metal Mining and Industrial Minerals Pipeline Transportation of Phosphate. (Paper by I. S. Tillotson, R. B. Burt, and J. A. Barr, Transactions AIME, 193, 273; Mining Engineering.
Jan 1, 1952
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Salt Lake City Paper - Flotation ReagentsBy Arthur F. Taggart
In 1900, Elmore found that if an acidulated pulp was stirred up with an oil which was relatively insoluble in and lighter than water, and the mixture was allowed to stratify, much of the sulfide would
Jan 1, 1928
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Part X - On the Determination of the Number, Size, Spacing, and Volume Fraction of Spherical Second-Phase Particles from Extraction ReplicasBy R. Ebeling, M. F. Ashby
The paper is in two parts. The first develops the formulae and method needed to calculate the size, nu)nber, spacing, and volume fraction of hard or inert particles in the interior of a specimen from
Jan 1, 1967
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Sulphur Equilibria Between Liquid Iron And SlagsBy Nicholas J. Grant, John Chipman
A FULL understanding of the behavior of sulphur in the basic open-hearth process has been delayed by lack of dependable data covering a wide range of slag conditions in the absence of other complicati
Jan 1, 1946
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PART III - Effects of Fabrication Parameters on Structural and Electronic Properties of Thin CdS and CdSe FilmsBy F. V. Shallcross
Physical properties of thin films of CdS and CdSe formed by vacuum deposition onto glass sibstrates have been studied as a function of deposition and processing conditions. The crystallinity and surfa
Jan 1, 1967
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Current Problems In Processing Of Fine Iron OreBy Walter Nummela
INTRODUCTION By the end of 1979 pellet productive capacity from the processing of low grade iron ores in the Lake Superior-District will total 86 million tons per year. Of that tonnage, 72 million
Jan 1, 1979
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Milwaukee Paper - Constitution of Tin Bronzes (with Discussion)By S. L. Hoyt
The writer has long been interested in seeking an explanation of the upper heat effect in the copper-tin alloys over the a + b range, first described in 1913. These notes are offered, not at all as th
Jan 1, 1919
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The Low-Temperature Gaseous Reduction Of A MagnetiteBy M. C. Udy, C. H. Lorig
THROUGH the years much interest has been centered in attempting to develop a direct method of iron-ore reduction, to replace or supplement the present indirect blast-furnace process. It would not be d
Jan 1, 1942
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Chuquicamata Develops Better Method to Evaluate Core Drill Sludge SamplesBy Glenn C. Waterman
THE diamond drill is a very important tool in exploration and development testing and its use is increasing. In almost all cases results of diamond drilling are analyzed on the basis of grade and tons
Jan 1, 1955
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The Constitution Of The Iron-Silicon Alloys Particularly In Connection With The Properties Of Corrosion-Resisting Alloys Of This Composition (206c4f71-50c8-4892-9acb-82066e568b56)By M. G. Corson
THE iron-silicon alloy series has always been one of the most puzzling among the binary alloys. Examining the well known mechanical properties of the iron-rich alloys only we meet the following situat
Jan 1, 1928
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Local Section News (d2b04a09-870c-49b6-83e1-a275dcc1d9ae)CHICAGO SECTION CHARLES H. MACDOWELL, Chairman, LUTHER V. RICE, Vice-chairman, HENRY W. NICHOLS, Secretary-Treasurer, Field Museum of Natural History, Chicago, Ill. ALEXANDER K. HAMILTON, G. P. HU
Jan 5, 1918
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Washington Paper - Notes on the Geology of the DeKaap Gold-Fields in the TransvaalBy W. H. Furlonge
WHILE fulfilling professional engagements, my travels over this portion of the Transvaal have been quite extensive—always on horseback however, so that anything like a thorough investigation of the gr
Jan 1, 1890
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Grains, Phases, And Interfaces: An Interpretation Of MicrostructureBy Cyril Stanley Smith
THE art of metallography is mature and the forms in which various micro-constituents appear are well known. Investigations almost without end have disclosed the importance of the exact manner of distr
Jan 1, 1948
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Occurrence And Origin Of Finely Disseminated Sulfur Compounds In CoalBy Reinhardt Thiessen
UNDER sulfur in coal, is usually understood that form of sulfur which is combined with iron and known as pyrite. It occurs in the form of halls, lenses, nodules, continuous layers, thin sheets, or fla
Jan 9, 1919
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Reservoir Rock Characteristics - Chromatographic Transport of Reverse-Wetting Agents and Its Effect on Oil Displacement in Porous MediaBy A. S. Michaels, R. S. Timmins
A study of the effect upon oil recovery from an un-consolidated porous medium of chromatographic transport of selected reverse-wetting additives during water displacement is described. Flow tests were
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Chicago Paper - Determining Gases in Steel and the Deoxidation of Steel (with Discussion)By J. R. Cain
In every process for making steel there are one or more stages where the metal is exposed to gas of one kind or another. Thus, in the open-hearth furnace, the carbon dioxide and water vapor in the pro
Jan 1, 1920
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Part II – February 1968 - Papers - Hydrostatic Tensions in Solidifying AlloysBy J. Campbell
The hydrostatic tensions in pure metals and long freezing range alloys are evaluated theoretically considering the viscous flow of residual liquid and the general plastic collapse of the casting. Th
Jan 1, 1969
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Production Of Magnesium By The Carbothermic Process At PermanenteBy T. A. Dungan
THE thermal processes for the production of metallic magnesium can be divided into two general classifications, the direct reduction of magnesia with carbon and the indirect reduction of compounds of
Jan 1, 1944
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"Magnex” Pilot Plant Evaluation - A Dry Chemical Process for the Removal of Pyrite and Ash from CoalBy Duane N. Goens, Clifford R. Porter
A 91 kg/h (200 lb per hr) pilot plant was constructed according to "Magnex" design. A non-compliance eastern coal which would generate more than 0.85 kg of SO2 per GJ (2.0 lb of SO2 per million Btu) u
Jan 1, 1980