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The Laboratory Determination of Dynamic Pressure Resistance of Cap-Sensitive ExplosivesBy Michael Wieland
Sharp transient stress waves generated during the delay blasting of underground coal can damage unfired borehole charges remaining in the delay pattern. These tremendous stress pulses in coal bear a s
Jan 1, 1990
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Improved Blast Results with Variable Density, Gassed EmulsionsBy L D. Lawrence, R S. Day, Gordon Coleman
Commercial emulsion explosives are typically characterized by their relatively high detonation velocities due to the intimacy of oxidizer and fuel and to their sensitization with glass microballoons.
Jan 1, 1990
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Effect of Boulder Geometry on Hydraulic Fragmentation using Small Explosive ChargesBy Paul Worsey, Richard P. Ayres, Mark F. C. Schmidt
A new alternative technique designed to reduce rock scatter and flyrock during boulder blasting is being developed at UMR. The method uses small explosive charges and is designed for shooting in close
Jan 1, 2000
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Analysis of Blast Damage to Green Concrete: A Dynamic Testing Approach to Field Cured SpecimensBy Travis Davidsavor, Stanley: Dong Vitton
Concrete is a common construction material used throughout the world, and with increasing demand of fast-track construction, blasting and concrete casting are occurring simultaneously at many sites wh
Jan 1, 2003
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Carbon Monoxide Poisoning Associated to Blasting Operations Close to HouseBy Pierre Auger, Benoit Levesque, Richard Martel, Guy Sanfacon, Louis-Charles Boutin, Marc-Andre Lavigne, Patrick Brousseau, Luc Trepanier, Louise Galarneau
Explosives used for blasting operations in civil engineering works, like construction of piping systems under roads, of pools, of houses and buildings can generate large volumes of carbon monoxide (CO
Jan 1, 2002
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The Use on Nonel Primadets for Blasting Initiation at the Magma Superior Mine Superior, ArizonaBy Peter P. Harvey
The Nonel Primadet is a non-electric delay blasting cap initiation system. The most recent field application of the system in the Southwest has been at the Magma Superior Mine, Superior, Arizona.
Jan 1, 1978
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Dri-Gel ExplosivesBy Mike Zimmermann
With the steady decline in the production of dynamites throughout the world, a gap appeared in the market which could only be adequately filled by rigid paper packaged explosives. To fill this need, t
Jan 1, 1998
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Rock Fragmentation and Mining Productivity: Characterization and Case StudiesBy Yves Lizotte, Malcom Scoble, Pierre Michaud
The concept of optimum fragmentation in surface mining operations, i.e. the degree of fragmentation to which corresponds the lowest overall associated costs of drilling, blasting, loading, haulage and
Jan 1, 1997
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Arlanda Link - A New Railway Beneath Arlanda Airport in Stockholm, Sweden, - A Technical Blasting ChallengeBy Donald Jonson
The Arlanda Link project is for the time being the most interesting project in Sweden, concerning rock and blasting technology. The total amount of rock excavated beneath Arlanda airport comprises 800
Jan 1, 1997
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Blasting Vibrations and Explosives PerformanceBy B Mohanty, R Yang
Blasting vibration information is now commonly used to diagnose blast malfunctions. These range from limiting vibration levels to protect normal dwellings to determining scatter in detonator firing ti
Jan 1, 1997
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Increasing Cast Blasting Benefit with the Use of High Speed Motion Picture Photography and AnalysisBy John L. Floyd
The use of explosive energy to displace overburden or waste material can provide substantial savings to operations which normally rely on mechanical means for material removal. To optimize the availab
Jan 1, 1988
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Blast Vibration and Impact Sound Control, Measurement and Documentation during Two Large-Scale Tunneling ProjectsBy Thomas Rupp, Michael Siegwart
The paper presents the vibration and sound emission measurement campaigns carried out in 2007 in preparation for the Ceneri-Basistunnel construction. We also present the vibration measurement campaign
Jan 1, 2009
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Practical Application of Emperical Blast DesignBy Donald J. Moore
It has become more important today than ever before to reduce costs and improve equipment utilization. One area where such improvement can he achieved is in the use of explosives. Effective blast desi
Jan 1, 1975
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Merging an Open Pit with an Underground MineBy Charles L. Greening
MARTIN MARIETTA CEMENT at Martinsburg, West Virginia, has been and presently is engaged in coupling present open pit with old underground workings. Various drilling and blasting techniques have been i
Jan 1, 1982
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250 Pound Down-Hole Drilling in Hard RockBy R L. Calhoun
A paper on High Pressure Air must start with the industry accepted definition of High Pressure Air and, for the reader who is unfamiliar with High Pressure Air systems, include basic information on wh
Jan 1, 1976
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Improving Productivity in Pillar Blasting – HZL, Sindesar Khurd MineBy Deepankar Das, Gulshan Kumar Sadhwani, Jyoti Prakash Sahoo
Sindesar Khurd Mine (SKM), the largest underground mine in the Hindustan Zinc Limited portfolio, is located approximately 60 kilometers (37 miles) north of Udaipur. In the 2018 financial year SKM achi
Jan 1, 2019
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Open Pit Wall Control Analysis using PhotogrammetryBy Charles Zdazinsky
Back-break induced from blasting is a concern in open pit metal mining because it compromises the conditions of the pit’s final walls. Final walls that have excessive blast induced damage commonly req
Jan 1, 2014
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Regression Model for Surface Vibrations from Underground OperationsBy Tristan Worsey, Nathan Rouse, Daykin Schnell
The authors were retained by a proposed underground metals mine operation to evaluate the potential blast vibration amplitudes that could be generated at surface structures above the proposed mine. Li
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To React Or Not To React? – Tis’a Fuelish Question!By Michael Wieland
Smoke/fume measurements from rapid transitory charge reactions are not wholly comparable with thermodynamic reaction code (TDRC) results, since quenched chemical reactions yield nonequilibrium concent
Jan 1, 2012
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History of the Development and Use of Bulk Loaded Explosives, from Black Powder to EmulsionsBy Robert B. Hopler
The history of bulk loaded explosives begins with the loading of black powder and RRP (Railroad Powder) into vertical boreholes. The early air place, net of black powder and nitrostarch dynamites is c
Jan 1, 1993