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Preliminary Results of the Detection and Identification of Glass Microsphere TaggantsBy Paul Worsey, Delbert Da, Eric Achelpohl
The University of Missouri-Rolla is currently researching the concept of using glass microspheres in explosives as taggants as part of a 3-year technical project funded by the Bureau of Alcohol, Tobac
Jan 1, 2001
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A Study of the Compressive Strength of Corrugated Boxes for ExplosivesBy Larry D. Lawrence, Gerald W. Greenway
Corrugated boxes have been the dominant shipping container for packaged commercial explosives for the past 3 decades. Recent changes in shipping regulations have dictated to the industry the adoption
Jan 1, 1994
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Mine Expansion Towards Blast Sensitive AreasBy Scott G. Giltner, Alex Schwenk
An iron operation sought to extend the life of the mine by conducting a major pit pushback in an area close to several public structures and the neighboring town. The result of the pushback would make
Jan 21, 2025
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Improving Blast Fragmentation Prediction with New Technologies for Rock Mass CharacterizationBy John Kemeny
There are many methods used to predict blast fragmentation, including empirical and numerical models, field trials, and experience from ongoing blasting. All of these methods require an accurate measu
Jan 1, 2004
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Longer Delay Periods Reduce Rockfall Hazard at a Contour MineBy Virgil J. Stachura, Larry R. Fletcher
The Bureau of Mines conducted a series of delayed blasting experiments at a West Virginia contour coal mine which resulted in smoother highwalls. The highwalls were smoother due to reduced overbreak a
Jan 1, 1985
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Near Borehole Fracture and Fragmentation Studies in Copper PorphyriesBy Catherine T. Aimone
A series of experiments have been performed to characterize fragmentation and microcracking in quartz monzonite copper porphyry. The flyer plate impact method was used to generate plane shock waves in
Jan 1, 1985
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The Effect of Explosive Type and Delay Between Rows on FragmentationBy Mark S. Stagg, Rolfe E. Otterness, Stephen A. Rholl
The Bureau of Mines fired seven test blasts in a 22-ft bench of limestone, screening the material to investigate the influence of explosive type and between row delays on fragmentation. Four 4-hole, s
Jan 1, 1989
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Fire Protection Provided by Detonator ContainersBy Lon D. Santis
The Code of Federal Regulations Title 30, Parts 56, 57, 75, and 77 require that detonators and explosives be separated by four inches of hardwood or equivalents when transported together in mines. Thi
Jan 1, 1997
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Designing a Suitable Explosive for Deepening Operations at a Major Indian PortBy C M. Deosthale, V N. Pangal, M N. Rao
New Mangalore Port is the most important port in Karnataka State, on the west coast of India on Arabian Sea. It handles export of iron ore, granite, coffee, spices etc and imports of crude oil, fertil
Jan 1, 1999
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Effective Construction Blasting Damage ControlBy Earl C. Hutchison, Gene Smith
Extensive blasting was required to construct an underground tunnel for a 90 inch sewerage relief line. The tunnel and required excavation extended under an upper middle-class residential area in Atlan
Jan 1, 1981
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Submarine Blasting at Palmer Station, AntarcticaBy John Wright
During June and July 1999 a United States Antarctic Program (USAP) team of three commercial divers and one blaster successMy removed an underwater rock obstruction which interfered with safe docking p
Jan 1, 2001
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Large Hole Presplitting with Modified Air Gap Blast Designs in Weak RockBy Larry R. Fletcher, Virgil J. Stachural, Matthew N. Plis
The Bureau of Mines is conducting research on blasting methods that reduce highwall overbreak and the associated rockfall hazards. This paper presents the results of a series of tests to improve presp
Jan 1, 1991
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Maumee Quarry Drilling and Blasting ChallengesBy Lee Wehner, Daryl Kin, John Bolger
The Maumee Quarry, located in the city of Maumee, Ohio, has large in-situ cavities, ranging in size from 3 ft (.91 m) in diameter to over 15 ft (4.5 m). The drill/blast team challenge is to drill, loa
Jan 1, 2007
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Reinforced Concrete Structure Failure Mechanisms Resulting from Explosively-Induced OverpressureBy Dale Preece, Vanessa Berg
This paper presents a two-pronged vulnerability analysis approach for treating minimally reinforced concrete (RC) structures subjected to explosive events. This work was motivated by a heightened inte
Jan 1, 2004
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Source Scaling Study of Single-Fired Mining ExplosionsBy Brian Stump, Rong-Mao Zhou
A series of single-fired (simultaneously detonated) explosions were conducted in an Arizona copper mine. The explosions spanned yields from 1700 to 13600 lbs (773 to 6169 kg) and were all detonated in
Jan 1, 2006
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Municipal Blasting: Blast Design, Vibration Monitoring & ControlBy Frank Lucca
This paper includes research and investigation into blast design and blast optimization for vibration control in municipal and tight blasting situations, where specifications were extremely stringent.
Jan 1, 2004
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Deep Water Blasting on the River Nile in Southern EgyptBy Rob Grant, Manuel Lopez Cano, Mike Briggs, Ken Fletcher
The scorched desert sands and life giving waters of the River Nile in Egypt have been the back drop to awe inspiring engineering feats for over 4,700 years. The latest engineering marvel to grace the
Jan 1, 2004
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"BLASPA" A Practical Blasting Optimization SystemBLASPA is the name for a computer code which can assist in the rapid optimisation of blasting procedures in an open-pit mine. BLASPA is based on a mathematical model of the blasting process, a model w
Jan 1, 1980
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Improved Drill and Blast Designs Free $3.6M of Ore for Surface Copper Mine Tacio Ferreira, Dyno NobelBy Tacio Ferreira
A surface copper mine in the Western United States faced challenges in recovering rock and ore from final walls because of geotechnical constraints that require restrictions on methods for loading bla
Jan 21, 2025
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A Method for Site-Specific Prediction and Control of Ground Vibration from BlastingBy Andrew P. Ritter, James W. Reil, Douglas A. Anderson, Stephen R. Winzer
We have developed a method for predicting and controlling ground vibration from blasting using a rigorous scientific approach. The method is based upon the superposition of seismic waveforms generated
Jan 1, 1985