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Recording an Extraneous Current on a Blasting Cable EventBy Lawrence Cheng-Kwang Hu
"Since the only available delay detonator in Taiwan is electric delay detonator, which can beaccidentally initiated by fire, i impact force, friction, static electric, lighting, radiotransmitter, and
Jan 1, 1993
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Blast Fragmentation for Maximising the Sag Mill Throughput at Porgera Gold MineBy Alex Jankovich, Darren Thornton, Sarrna Kanchibotla, Cam Grundstrom
The Porgera joint venture and Dyno Noble have commissioned a joint project to optimise the drill and blast operations to increase the overall profitability of the mine. One of the aims of this project
Jan 1, 2001
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Detonation Behavior of Emulsion Explosives Containing Large VoidsBy Y. Hirosaki, H. Hamashima, Y. Itoh Kato, S. Tanaka
The emulsion explosives show non- ideal detonation behavior, and its detonation velocity can be controled by selecting the size and adjusting the quantity of voids involved. To establish the technolog
Jan 1, 2000
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Development and Application of a 3-D Rock Blast Computer Modeling Capability Using Discrete Elements - DMCBLAST_3D*By Dale Preece, Stephen Chung, Richard Jensen
DMCBLAST_3D is a three-dimensional extension of the proven two-dimensional rock blast modeling code, DMCBLAST. DMCBLAST has been under development since 1987 and has successfully predicted the physics
Jan 1, 2001
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Development of the Wireless Initiating System Using Microwave PowerBy Masanobu Morita, Koichi Kurokana, Kenji Hashimoto, Yoji Tasaki, Yukio Iida
"It has been the long desire of blasting engineer to realize the automatization of tunnelblasting to improve the safety and efficiency. As for bore hole drilling, the automatizationhas been achieved b
Jan 1, 1993
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Calculation of the Model Structure of Emulsion ExplosiveBy Wang Xuguang Shen Yingfeng
Structure is the main aspect affecting the performance of emulsion explosive. Calculation of such structure parameters as osmosis pressure, interface area per unit volume etc. must be helpful to the u
Jan 1, 1998
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Ammonium Nitrate Blasting Agents Quality Testing for Maximum BenefitBy Philip H. Porter
Ammonium nitrate blasting agents continue to be the work-horse of the explosives industry. The versatile, low-cost, anfo products, whether packaged, poured, or bulk, continue to produce superior resul
Jan 1, 1984
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The Underwater Evaluation of the Performance of Bulk Commercial ExplosivesBy Alan R. Cameron, Alastair C. Torrance
An explosives underwater test facility has been established and commissioned in the Hunter Valley, New South Wales, Australia which allows the measurement of the actual shock and gas energies of the e
Jan 1, 1990
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Relating Explosives Sensitivity Laboratory Results to Field TestsBy R R. Vendebeek
The continuing evolution of explosives has most recently introduced emulsion explosives and heavy ANFO's to the market place. An explosives engineer has a multiplicity of explosives to choose from: dy
Jan 1, 1987
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Sequential Timing for Ore Control Blasting in NevadaBy Dale Nies, David P. Childs
The open pit gold and silver mining operations in the State of Nevada have historically used simple row by row, echelon, or chevron delay patterns. Common practice has been to use detonating cord trun
Jan 1, 1991
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Blasting Near Buried Pipelines: A Gas Company ProspectiveBy Frederick R. Cosgrave
Blasting near buried Natural Gas pipelines has always been an area of great concern. Given the many variables that the blaster must contend with in determining how to break the rock while trying to ke
Jan 1, 1995
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What Every Defense Lawyer Wished his Blasting Company Clients KnewBy Jay P. Tobin
This paper will address the legal standards applicable to construction blasting lawsuits and offer best practices suggestions for pre-blast inspections, documenting the construction blasting work, rec
Jan 1, 2015
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Bulk Loading of Emulsion Explosives in Shaft SinkingBy R J. Roach, D Roy
After months of discussion on ways and means to improve productivity in the shaft sinking process, it was decided to look at those areas where, historically, methods have been stagnant for many years.
Jan 1, 1997
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Controlled Study of the Effects of Temperature and Humidity vs Blast Vibrations on HomesBy R Wing, D Corkery
"Several mines in the region of Sudbury, Ontario, occur in or near populated areas. In anattempt to examine the effects of environmental changes and blast induced vibrations onhomes in the area, a mon
Jan 1, 1993
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The Effects of Stemming Consist on Retention in BlastholesBy Jim Davis, Calvin J. Konya
The methods used to confine the gases within a borehole can influence the amount of useful energy obtained from the explosive charge. Improper confinement not only wastes energy and raises cost but al
Jan 1, 1978
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Wall Control at Michegan Iron Ore MinesBy William B. Lee, James J. Jurmu
The Cleveland-Cliffs Iron Company operates three open pit iron mines on the Marquette Iron Range of Michigan's Upper Peninsula. Open pit iron ore mining began in the area in the 1840's. Underground mi
Jan 1, 1986
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Expanded Rock Blast Modeling Capabilities of DMC_Blast, Including Buffer Blasting (8d3245d8-d11a-497d-a1ac-718f78cbeb14)By Dale S. Preece, J Paul Tidman, Stephen H. Chung
A discrete element computer program named DMC_BLAST (Distinct Motion Code) has been under development since 1987 for modeling rock blasting (Preece & Taylor, 1989). This program employs explicit time
Jan 1, 1997
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Tunneling from an Underground Limestone Mine to the SurfaceBy John A. Huber
At an underground limestone mine in the Central United States; there were plans for the installation of a limestone processing plant. The special design and layout of the plant called for the installa
Jan 1, 1995
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The Evolution of Mining and Explosives in the Powder River BasinBy Joseph W. Hejny, Marlyn G. King
Coal mining in the Powder River Basin has changed in recent years to accommodate the large quantity of coal produced. With strip ratios of one to one and up to three to one, extensive amounts of overb
Jan 1, 1994
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Unusual Accidents Caused by ESDBy James G. Stuart
For precise control and timing of a blast, people use electric detonators. Most of these contain a fine metal “bridgewire,” that heats to the required burning temperature when electric current passes
Jan 1, 2005