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RI 8546 Effect of Additives on Sintering of Silicon Nitride-Alumina-Aluminum Nitride CompositionsBy B. W. Jong
As part of the Bureau of Mines program to develop substitutes for critical and strategic materials for metallurgical applications, the Tuscaloosa Research Center has evaluated the effect of additives
Jan 1, 1981
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RI 8959 - Bulkheads and Drains for High Sandfill StopesBy R. L. Soderberg
Large open stopes mined by vertical crater retreat or sublevel s are sometimes backfilled with uncemented sand to support the stope walls and alleviate rock bursts. The failure of bulkheads in two dif
Jan 1, 1985
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Thermally Induced Filter Bias in TEOM Mass MeasurementBy Donald P. Tuchman, Robert P. Vinson, Steven J. Page
Researchers at the National Institute for Occupational Safety and Health (NIOSH) have long used stationary tapered element oscillating microbalances (TEOMs®) in laboratory settings. They have served t
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An Evaluation Of The Respirable Dust Sampling Program In United States Underground Coal MinesBy D. P. Schlick
As of June 30, 1970, Federal regulations required the operator of each underground coal mine to maintain the average concentration of respirable dust below legislative standards. As of March 1, 1971,
Jan 1, 1971
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RI 6742 Electrowinning Tungsten In Halide And Phosphate ElectrolytesBy John M. Gomes
Two molten salt systems were evaluated as electrolytes for the repetitive recovery of tungsten from tungsten oxide (W03) made by calcining commercial-grade ammonium paratungstate. Using a sodium chlor
Jan 1, 1966
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RI 5179 Fabrication Of Titanium Prototypes Of 81-Mm. Mortar Base Plate ? SummaryBy R. W. Huber
The successful development of a titanium prototype of the 81-mm. mortar base plate for the Army Ordnance Corps is outlined in this report. Information is presented dealing with forming, forging, and m
Jan 1, 1956
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MLA 33-93 - Mineral Resources Of The King Mountain Study Area, Butte County, Idaho ? SummaryBy Thomas J. Peters
The King Mountain study area is centered about 120 air km northwest of Blackfoot, and 30 air km north of Arco, Idaho. The study area makes up the southern one-third of the northwest-trending Lost Rive
Jan 1, 1993
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RI 6383 Anthracite Metallurgical Briquets as Blast Furnace FuelBy J. W. Eckerd, W. S. Sanner, P. L. Woolf, R. E. McKeever
The Bureau of Mines experimental blast furnace was operated successfully with anthracite metallurgical briquets . Tuyère pressures were higher and more erratic than for operations using coke , and fur
Jan 1, 1964
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RI 9309 - Column Flotation of Multiple Products From a Fluorite OreBy M. R. Peterson
The U.S. Bureau of Mines investigated column flotation for recovery of a high-grade fluorite (CaF2) concentrate and byproduct concentrates from the Fish Creek fluorite deposit in Eureka County, NY. Th
Jan 1, 1990
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RI 8007 Improvements in Ferric Chloride Leaching of Chalcopyrite ConcentrateBy F. P. Haver
A method to recover copper and elemental sulfur from chalcopyrite concen¬trate, using a ferric chloride leach, CuFeS2 + 3FeCl3 ? CuCl + 4FeCl2 + 2S, was reported by the Federal Bureau of Mines i
Jan 1, 1975
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IC 7578 Petroleum Refineries, Including Cracking Plants in the United States, January I, 1950By J. G. Kirby, F. S. LOTT
The mmber of petroleum refineries in the United States decreased during 1949 from 375 to 367 while the total crude-oil charging capacity of refineries continued to increase. A gain in the through-put
Aug 1, 1950
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RI 4631 Investigation Of Cherry Creek Tungsten District, White Pine County, Nev.By Holmes, George H. Jr.
The Cherry Creek tungsten district was explored by the Bureau of Mines from April 16 to August 13, 1942. This district is in north-central White Pine County, Nev., 50 miles north of Ely. Principal wor
Jan 1, 1950
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IC 8486 Two-Phase Equilibria Of Analytical Binary Solutions Near The Critical PointBy B. J. Dalton
Several relationships between coexisting phases for analytical binary solutions near the critical point are given. These relationships were developed from a consideration of a (G u, P) surface at cons
Jan 1, 1970
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IC 6827 Safety Posters at the Calumet & Hecla MinesBy F. S. Crawford
It has been said that safety promotion passes through four stages--the band-playing, the machine-guarding, the protective equipment, and finally the educational stage; the last is the most important i
Feb 1, 1935
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IC 7192 Occurrences And Uses Of Dolomite In The United States ? IntroductionBy Shirley F. Colby
Much interest has been shown recently in the possible utilization of dolomite as a source of magnesium metal, a large production of which is deemed essential for national defense. As a result, many in
Jan 1, 1941
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RI 9393 - Characteristics of Mining-Induced Seismicity and Rock Bursting in a Deep Hard-Rock MineBy P. L. Swanson
Over a recent 20-month observation period, the U.S. Bureau of Mines obtained seismogram records from a single vertical-component, short-period seismometer installed at the surface of a metal mine in n
Jan 1, 2010
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RI 8556 Consolidation of an Iron-Base Superalloy by Powder Metallurgy TechniquesBy J. F. McIlwain
As part of its goal to minimize the requirements for critical materials, the Federal Bureau of Mines has investigated the consolidation of an iron-base superalloy (20 pct Cr, 5 pct each Ni and Mn, 1 p
Jan 1, 1981
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IC 7537 Petroleum Refineries, Including Cracking Plants, Ip the United States, January 1, 1949By F. S. LOTT, I. S. CULVER
The number of petroleum refineries in the United States decreased during 1948 from 390 to 375, continuing the trend to fewer units of larger individual capacity that has persisted since the peak in nu
Sep 1, 1949
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RI 6657 Relation Of Density And Porosity Data To Structural Features Of AnthraciteBy Jerry W. Ramsey
The Bureau of Mines examined a low-, a medium-, and a high-volatile Pennsylvania anthracite by densimetric methods using four mesh si.s of each anthracite. Using high-pressure mercury the macropore vo
Jan 1, 1965
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RI 2921 Coarse Sand Flotation Classification And Table Concentration ? IntroductionBy A. W. Fahrenwald
Coarse sand flotation, both alone and in conjunction with gravity concentration, is a subject of research at the U. S. Bureau of Mines Field Office, Moscow, Idaho. One of the most important results of
Jan 1, 1929