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OFR-61-82 Design And Develop Feasible Lighting System For Conventional Slopes Under ConstructionBy William F. Hahn
This report describes an illumination system suitable for use in a slope under construction, Simulator work was performed using actual lighting hardware to verify adequate light levels to meet MSHA pr
Jan 1, 1981
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RI 3219 The National Safety Competition of 1932By W. W. Adams
"The eighth National Safety Competition, that for 1932, conducted by the United States Bureau of Mines, was participated in by 322 mines and quarries operating in 34 States. Tables 2 to 6 show the rel
Jul 1, 1933
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RI 7151 A Model For Molten Pools In Arc MeltingBy F. W. Wood
The use of consumable.-electrode arc melting as a production technology is growing. One advantageous feature of this process is that it avoids ingot contamination by soluble crucible materials by empl
Jan 1, 1968
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RI 7886 Field Studies on an Unsupported Roof, York Canyon Coal Mine, Raton, N. Mex.By Raymond M. Stateham
Infrared and displacement studies were made of an unsupported roof in Kaiser Steel Corp.'s York Canyon coal mine, Raton, N. Mex. Monitoring of the roof continued until the roof over the area was
Jan 1, 1974
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IC 6870 Coal-Mine Explosions And Fires In The United States During The Fiscal Year Ended June 30, 1935 ? IntroductionBy D. Harrington
The experience of the past 2 years has demonstrated clearly that mine explosions with heavy loss of life can be prevented. The investigations of the Safety Division of the United States Bureau of Mine
Jan 1, 1936
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RI 7594 Classification Test Methods For Oxidizing MaterialsBy J. M. Kuchta
Bench-scale test methods were developed by the Bureau of Mines for use by the Department of Transportation in the classification of solid and liquid oxidizers. A burning rate test is recommended for e
Jan 1, 1972
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RI 9255 - Heat-Resistant Steels Containing 8 pet CrBy D. E. Larson
The U.S. Bureau of Mines investigated Fe-base alloys containing 8 pet Crwith Ni, AI, and Si additions as substitutes for standard AISI Type 304 stainless steel (SS) in high-temperature oxidizing appli
Jan 1, 1989
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IC 8078 Tungsten Deposits Of Gila, Yavapai, And Mohave Counties, Ariz. ? Introduction And SummaryBy V. B. Dale
This report is one of a series covering the mineral resources of the Nation. It briefly describes most of the known tungsten deposits in Gila, Yavapai, and Mohave Counties, Ariz. Many of the descripti
Jan 1, 1961
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RI 7485 Tungsten And Dispersion-Strengthened Tungsten Made By Freeze DryingBy M. J. Ferrante
The Bureau of Mines investigated the applicability of the freeze-drying technique for preparing dispersion-strengthened tungsten powders suitable for conversion by powder metallurgy into materials whi
Jan 1, 1971
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OFR-145-80 Instability Of Contoured Surface-Mined Landscapes In The Northern Great Plains: Causes And ImplicationsBy Gerald H. Groenewold
Reclamation of surface-mined landscapes is commonly defined only in terms of biological productivity. Other critical concerns associated with surface mining include the long-term quality of groundwate
Jan 1, 1980
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Minor Nonmetals ? Greensand (74481975-a706-424a-ad3c-6e935dc90045)By Richard H. Singleton
Greensand, which is widely distributed in the Eastern United States, was produced in 1976 only by the Inversand Co., a subsidiary of Hungerford & Terry Inc., near Clayton, N. J. Production and sales i
Jan 1, 1978
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RI 5424 Cable-Tool Coring With Oil-Base Mud In Appalachian Oilfields ? SummaryBy W. T. Wertman
A research program to aid development of better and more efficient methods for producing petroleum and increasing its ultimate recovery from underground formations is an integral part of the work of t
Jan 1, 1958
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RI 2997 Engineering Study Of The Seminole Area Seminole And Pottawatomie Counties, Oklahoma ? IntroductionBy R. R. Brandenthaler
The development of the Seminole area into one of the major oil-producing sections of the country has been accompanied by many innovations and departures from former methods of development. On July 1,
Jan 1, 1930
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RI 6065 Factors Influencing The Design Of Hydraulic Backfill Systems (In Two Parts) 1. Friction-Head Losses Of Sand Slurries During Pipeline Transport ? SummaryBy William R. Wayment
The objective of this investigation was to obtain data on friction-head losses of sand slurries during their transport in pipelines. The data ultimately will be used in designing hydraulic transport s
Jan 1, 1962
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Silicone Vapor Poisoning of Catalytic Methane SensorsBy L. J. E. Hofer, J. L. Snyder, J. N. Barn, J. E. Chilton, W. E. Thomas
Various silicone materials have been proposed for use in mining environments. The catalytic methane sensors now employed are poisoned by silicone vapors. Activated charcoal and carbon cloth adsorbents
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RI 7356 Effects Of Type Of Cut, Delay, And Explosive On Underground Blasting In Frozen GravelBy Richard A. Dick
Underground blasting in permanently frozen gravel was studied in a 7-by 12-ft drift by running a nonreplicated 2 X 2 X 2 factorial experiment on the effects of type of cut, delay, and explosive on the
Jan 1, 1970
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OFR-94-82 Illumination Of Electric Powered, Mobile Surface Mining EquipmentBy David D. Hottinger
Only a minimum amount of illumination is generally provided for many types of mobile surface mining equipment. This condition presents a hazard to operating personnel working on and around such equipm
Jan 1, 1981
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RI 8296 Preconcentration of Native Copper Ore by Electronic SortingBy V. R. Miller
The Bureau of Mines developed and evaluated a detecting and sorting device to separate the copper-bearing portion from the barren portion of Michigan native copper ore in the minus 4- plus 1-inch size
Jan 1, 1978
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OFR-63-75 Testing And Evaluation Of Rotary Water Seals For Wet-Head Continuous Mining MachinesBy Robert D. Saltsman
Two modes of seal application were identified, and promising state-of-the-art seals of both types -shaft and drum -were selected for initial rating by non-destructive testing. Only one shaft seal surv
Jan 1, 1975
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RI 7815 Suppression of Coal-Dust Explosions by Passive Water Barriers in a Single-Entry MineBy I. Liebman
A Bureau of Mines study is in progress to determine the effectiveness of passive water barriers in suppressing coal-dust explosions. A 2.9-ft3-capacity water-filled plastic tub was found effective in
Jan 1, 1974