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Hearing Loss Prevention - Investigation Of Technology For Hearing Loss Prevention (f48a2330-b3f2-41e5-93df-38851e3d20e2)PURPOSE: Evaluate practical technological advances in level-dependent hearing protectors and inexpensive personal acoustic monitors. RESEARCH SUMMARY: The results of previous NIOSH research show
Jan 1, 2000
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Hearing Loss Prevention - Investigation Of Technology For Hearing Loss PreventionBy David C. Byrne
PURPOSE: Evaluate practical technological advances in level-dependent hearing protectors and inexpensive personal acoustic monitors. RESEARCH SUMMARY: The results of previous NIOSH research show
Jan 2, 2000
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RI 9661 - Geophysical Methods To Detect Stress In Underground MinesBy John Jordan, Tesarik, Steven J. Knoll, Theodore J. Williams, David K. Denton, Douglas F. Scott
Highly stressed rock in stopes continues to be a primary safety risk for miners in underground mines because this condition can result in failures of ground that lead to both injuries and death. Pers
Jan 1, 2004
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RI 8577 - Methane Drainage Study Using an Underground Pipeline, Marianna Mine 58By G. L. Finfinger, J. Cervik, L. J. Prosser
The Bureau of Mines has completed an underground degasification project in which an underground piping system was used to transport methane from the coalbed to the surface. In a 10-month period four h
Jan 1, 1981
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OFR2-84 In Situ Mining Of Bituminous Coal With Fluorinated Solvents - I. Introduction And SummaryBy Arnulf P. Hagen
This project was designed to explore the suitability of using fluorinated inorganic materials as solvents for the in situ mining of thin seamed, heavily overburdened coal; to build a data base for the
Jan 1, 1983
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RI 7177 A Multistage Probability Model Of Sample Reduction In The Mineral IndustriesBy Robert M. Becker
A multistage probability model for assessing the reliability of mineral samples following any number of stages of sample reduction is presented. Sample reduction is the process of alternately crushing
Jan 1, 1968
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IC 7620 Physiological Aspects Of Electrical Accidents In The Coal-Mining Industry ? IntroductionBy S. J. Davenport
[The tremendous increase in mine mechanization since 1929 has increased markedly the application of electric power in and about the coal mines of the United States. Cutting, drilling, and leading mach
Jan 1, 1951
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RI 8411 Iron-Based Alloys Strengthened by Ternary Laves PhasesBy J. S. Dunning
A primary goal of the Federal Bureau of Mines is to minimize the requirements for scarce mineral commodities through conservation and substitution of more abundant elements, such as iron and molybdenu
Jan 1, 1979
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RI 3413 National Safety Competition of l937By W. W. Adams, E. E. Getzin, T. D. Lawrence
"The thirteenth annual accident-prevention competition conducted by the Bureau of Mines during the calendar year 1937 was completed with 318 mines and quarries participating. This contest, known as th
Aug 1, 1938
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RI 8662 Superplasticity in Commercial and Experimental Compositions of Magnesium Alloy SheetBy M. M. Tilman
The Bureau of Mines conducted research to evaluate superplastic behavior in commercial magnesium-base alloys AZ6IA, ZK60A, ZW3, AZ3IB, ZWI, and an experimental Mg-12 pct Al alloy. Strain-rate sensitiv
Jan 1, 1982
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RI 8591 Protection Factors of the Airstream HelmetBy Andrew B. Cecala
The Bureau of Mines conducted laboratory and in-mine tests on the Racal airstream helmet (Model #AR21) to evaluate its protection efficiency. Laboratory tests indicated that as ambient air velocity in
Jan 1, 1981
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RI 2632 An Experimental Still For The Detailed Study Of Crude Petroleum - IntroductionBy H. B. Cooke
In connection with its researches on the crude petroleums of the United States, the Bureau of Mines has made a particular study of apparatus for the distillation of hydrocarbon mixtures. While this st
Jan 1, 1924
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RI 6012 Small-Scale Blasting In Mortar ? SummaryBy J. Burlin Johnson
In small-scale blasting experiments conducted in the Bureau of Mines laboratory, small charges were used to produce craters in blocks of concrete mortar. The results are compared with larger scale exp
Jan 1, 1962
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1. 1 General DiscussionWater infiltration control techniques are designed to reduce the total volume of water entering an underground mine, and thus, reduce the volume of mine water discharge During the development of under
Jan 1, 1975
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IC 7777 Storage And Cataloging Of Drill Core By The Bureau Of Mines ? SummaryBy James E. Hill
In the course of exploratory drilling during World War II by the Bureau of Mines under the Strategic and Critical Minerals investigations Program, a problem arose as to the ultimate disposal of the dr
Jan 1, 1957
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RI 7842 Forecasts of Chemical, Physical, and Utilization Properties of Coal for Technical and Economic Evaluation of Coal SeamsBy Manuel Gomez
A computerized moving average technique was developed to interpolate coal seam characteristics between sample points. The interpolative method coupled with multivariate regression analysis and simulat
Jan 1, 1974
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RI 8440 Stress Distribution Around Resin-Grouted BoltsBy Daryl E. Radcliffe
Ninety-seven roof bolts were instrumented with strain gages and resin-grouted in three areas of the Bear coal mine, Somerset, Colo., by the Bureau of Mines. Measurements taken with these instruments i
Jan 1, 1980
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IC 9123 Placer Gold Deposits Of The Eagle Trough, Upper Yukon River Region, AlaskaBy James C. Barker
Gold placer deposits along the upper Yukon River, in the region between the river villages of Circle and Eagle, were investigated by the Bureau of Mines. The investigation was conducted intermittently
Jan 1, 1986
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IC 9116 Thick-Seam Mining In The Western United States-Geological ConsiderationsBy D. L. Boreck
Thick coal seams are common in the Western United States, Many seams are over 50 it thick (some are over 200 ft thick) and are too deep to extract using surface methods. Currently, such deposits are d
Jan 1, 1986
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RI 5911 Production Of Synthesis Gas And Hydrogen By The Steam-Iron Process: Pilot Plant Study Of Fluidized And Free-Falling Beds - SummaryBy S. J. Gasior
Pilot plant studies showed the technical feasibility of fluidized-bed operation for producing hydrogen and synthesis gas by the steam-iron process. A mixture of iron and iron oxide from 20-to 100-mesh
Jan 1, 1961