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Electronic Detonators Technology of the FutureBy Aloke Verma, R. Singh, S. Jana, C. Sawmliana, P. Pal Roy
On July 21, 2004, a trial blast using electronic detonators was conducted in India for the first time in an opencast mine at Pundi-E Quarry of TISCO, West Bokaro. Orica-IEL conducted the test using el
Jan 1, 2006
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A Method to Measure Detonation Front Curvature of Emulsion ExplosivesBy Nikolaos Petropoulos, Daniel Johansson, Håkan Schunnesson
The optimization of the explosive performance is of great importance since blasting is extensively used in civil projects and mining industry. An improved understanding of how the energy from the deto
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Vibration Spectral MappingBy Gordon M. Matheson, Douglas A. Anderson, David K. Miller
"Traditionally, analysis of vibrations from blasting has been focused on peak particle velocity fordetermining the likelihood of both annoyance and damage. The US Bureau of Mines, in RI 8507,indicated
Jan 1, 1997
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Excavation for Underground Salt PlantBy Jim Breedlove, Stephen P. Case, Mike Fabio
To meet salt production needs over the remaining life of the Cayuga Mine at Lansing, New York, the Salt Division of Cargill, Inc. decided to build a new underground screening plant. The new plant requ
Jan 1, 1996
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A Case Study of Near-Field Vibration Monitoring, Analysis, And ModelingBy Tamara Whitaker, James Gunderson, Ruilin Yang
This paper presents the results of a vibration control project conducted in soft overburden at a surface coal mine located in the western United States. The study uses near-field blast vibration monit
Jan 1, 2008
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Determination of the Dynamic Uniaxial Tensile Strength of Laurentian Granite Using an Explosivesly-Impacted Hopkinson Pressure BarBy P D. Katsabanis
The dynamic tensile strength of geomaterials is known to be highly dependent on the strain rate of the load applied. This is significant in applications where the material is subjected to shock waves
Jan 1, 2010
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Blast Modeling with Sabrex 3.6 and Its Applications to Improve Mine ProductivityBy Stephen H. Chung
The SABREX computer blast simulation program permits the study of the effective use of explosive energies and predicts the total performance of a blast in terms of:fragment size distribution: muckpile
Jan 1, 1995
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Application of Underground Bulk Explosives in Polyethylene Pipes for Perimeter ControlBy Jena Moshen
Underground Bulk Systems (UBS) technology has gained widespread application in tunneling and underground mining owing to its safety, reliability, increased Velocity of Detonation (VOD) and excellent r
Jan 1, 2018
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3D Computer Simulation of Bench Blasting with Precise Delay TimingBy Dale S. Preece
"Detonation delay timing has been an important aspect of quality rock blasting for decades. Detonators that enable delay timing have improved over the years especially with the recent advent of precis
Jan 1, 2009
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Journal: Hazmat 101 / PART 4 – Cargo Segregation and SecurementBy Tom Snyder, John Brulia
Part 4 is the final article by the authors on hazardous materials (HM)transportation safety and compliance for U.S. shippers and carriers who offer and transport commercial explosives in commerce on p
Jan 1, 2015
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Strategic Public Relations for Underground Conservatory at Tennessee Governor’s ResidenceBy Jake Hutchison, Wade Hutchison
The opposition to the project has risen as a result of some political pressures and from public perceptions about the project’s necessity and its impact on the neighborhood. As a result of this contro
Jan 1, 2009
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Blasters' SurvivalBy John C. Brulia
The IME member companies, the ISEE along with its chapter organizations, the Federal, state and municipal regulatory agencies, and the industry consultants and suppliers have developed safety equipmen
Jan 1, 1994
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The Mechanisms of Rock Damage in Blasthole Open Stope Mining: Blast Induced Versus Stress InducedBy Qian (Ken) Liu, Remi Proulx
A large scale blast damage project was carried out over the past two years at INCO Ltd Manitoba Division co-funded by the Canada/Manitoba Mineral Development Agreement. The experiment was conducted at
Jan 1, 1995
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Blast-Induced Heave Modeling in Three DimensionsBy Dale Preece, Ayman Tawadrous
This paper presents a number of examples of three-dimensional blast modeling in both surface and underground environments that include time-delay explosive decking. These examples include: 1) quarry b
Jan 1, 2014
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Demonstrating Competence from Charge Hands to Chartered EngineersBy Ken Cross
This paper aims to demonstrate that explosives organizations and workers have a legal, moral and financial duty to be able to demonstrate their competence when required, and how that may be achieved a
Jan 1, 2013
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Blasting in the New Mellinnium: On the Road to ProfessionalismBy Steve Dillingham
Blasting crews, explosive product drivers, drillers, blasters, supervisors, and salespeople all arrive daily at customer blast sites in vehicles of every type whether passenger cars, pickup trucks, or
Jan 1, 2003
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Journal: Near Field Vibration Monitoring for Rock Mass Damage Control Tala Hydroelectric Project, Bhutan IndiaBy H. Venkatesh, Balachander R.
This article discusses the method that was adopted for controlling damage to rock mass while excavating an underground powerhouse cavern at Tala Hydroelectric Project. It discusses in detail the near
Jan 1, 2006
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479 Charges, 13 Decks...120 Meters Above a Crushing PlantBy Thierry Bernard
This case study shows how a unique combination of field measurements and advanced technologies allowed blasters designing, loading and firing an incredibly challenging quarry blast.
Jan 1, 2015
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Electronic Detonator and Initiation Systems - Implications of the Dominant Design for Widespread Acceptance and Sales of this 'New' TechnologyBy Steve Brace
Electronic detonators have been commercially available to the mining industry worldwide for over ten years. It is estimated that total cumulative global sales will have reached 25 million units by the
Jan 1, 2004
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Fingerprint Verification For Control Of Electronic Blast InitiationBy Ron Stewart, Richard Youmaran, Andy Adler
In the current context of heightened concerns with explosives security, there is significant interest in technological controls to improve security. It is important to be able to control what is fired
Jan 1, 2007