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Systems Integration of a Global Explosives Security System at a MultiNational Explosives Manufacturer Using Radio Frequency Identification Device (RFID) Based Technologies for Tracking and Monitoring Explosives and DetonatorsBy Thomas Zukovich, Robert Morhard, Thomas Gelormino
The ExploTrack Explosives Tracking System is a sophisticated integration platform designed to track explosive products in both fixed locations and mobile environments globally, in real-time, on a 24/7
Jan 1, 2007
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Modified Case Charge for Avalanche ControlBy Eduardo Lozano, Vilem Petr
This paper provides an overview of a new method for avalanche control using a high explosive charge placed at the avalanche runout zone: the case charge technique. This new avalanche control technique
Jan 1, 2018
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On Board Excavator Dilution DetectorBy Benjamin Cebrian
Traditional dilution control systems range from computer modeling, use of physical markers on the field as polypipes to a technology that marks some control points where displacement is measured. The
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Implosive-Type Electrical/Mechanical Conectors-Noise Spectrum and Blast Pressure ModificiationBy Ettore Contestabile, Cameron Thomas
Implosive connectors such as XECONEXTn have been used extensively for joining electrical conductors. This implosive action of explosives has also been used in other forms of high-energy metal working
Jan 1, 1994
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Electronic Detonators and LightningBy J. Lindenau
One of the significant benefits of electronic detonators is their safety, especially their relative insensitivity to extraneous electrical energy. The various brands of electronic detonators on the ma
Jan 1, 2008
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Underwater Explosives ApplicationBy Donald F. Rapp, Thomas E. Brown
The application of commercial explosives in an underwater environment, sometimes referred to as submarine blasting, presents the blaster with a unique set of demanding conditions which require exactin
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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Use of Single Charge Vibration Data to Interpret Explosive Excitation and Ground Transmission CharacteristicsBy O E. Jr Crenwelge
Frequency domain, single-charge vibration signatures are used to interpret the characteristics of explosive impulse excitation and ground vibration transmission. The effects of charge height, charge s
Jan 1, 1988
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Utilizing Continuous Photo Analysis of Fragmentation as a Blast / Crush Improvement ToolBy James McGough, Lawrence Mirabelli, Ran Tamir
The paper will demonstrate how automated fragmentation photo analysis is being used at the Lafarge North America, Ravena NY quarry as part of an ongoing drill, blast and primary crushing continuous im
Jan 1, 2012
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Why Electronic Detonators Practical Demonstration with DSL2 & DSL3 SystemsBy Thierry Bernard, Phillipe Cappello, Jean Marc Laboz
"The main reasons of the emergence of electronic detonators are linked to:-Local urban development close to mining operation sites-Environment regulations"
Jan 1, 1995
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Urban Tunneling for the MWRA's Boston Harbor Clean UpBy Gordon C. Petersen, Gary A. Almeraris
This paper describes the controlled blasting techniques required to mine a rock tunnel section of a main interceptor located in the Boston Metropolitan area. The 3m (10 ft) x 2.8m (9.25 ft) horseshoe
Jan 1, 1991
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Demolition of a Storehouse by the Blasting and the Simulation of the Demolition by DDA MethodBy Kunihisa Katsuyama, Yuji Ogata, Yuji Wada
The one free surface blasting of a concrete block was simulated by Discontinuous Deformation Analysis(DDA) method. Comparing the simulated results with the concrete block blasting experiment, the crac
Jan 1, 1996
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Journal: 100 Years / Mining & Scientific Press San Francisco March 18, 1905By Robert Hopler
This article, advocating having employees whose specific job would be to fire blasts in underground coal mines in llinois, was written 5 years prior to the establishment of the U.S. Bureau of Mines,
Jan 1, 2006
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Velocity Capture Methods and ComparisonsBy Kevin Phelps, Jason Baird
When dealing with high velocity projectiles, the ability for researchers to accurately and precisely measure the velocity of the projectile is of great value. This report will analyze three different
Jan 1, 2014
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Underwater Explosions Part 3. Effects of the RDX Increments to the Shock, Gas Heave and Total Energy Values of TNTBy M. Hagfors
Underwater explosions have been used several decades for the determination energy content of explosives. It’s the only test method by which shock and gas heave energy values can be determined separate
Jan 1, 2006
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Delay Timing and Vibration Characteristics at Low-Frequency Mine SitesBy D E. Siskind
The Bureau of Mines performed a comparative study of nine sites at eight surface coal mines to determine if the presence of near-surfaced underground abandoned workings resulted in the generation of a
Jan 1, 1990
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Controlled Blasting for the Construction of an Underground Power HouseBy Abraham Lindo
Panama’s current economical growth demands an increase in electric power supply; projected energy supply for 2012 exceeds the demand by as little as 2%. In an effort to comply with the demand, several
Jan 1, 2013
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ROCSCAN: A Multipurpose Geomechanics InstrumentBy D Frantzos, J J. Cotter, H Tammemagi, J B. Codrington, J Kaasalainen, A C. Webster
"Exploshres Technologies International (ED) is developing an instrument called ROCSCAN which isplanned to have broad application in both blasting and rock mechanics. The purpose of this paper is to ou
Jan 1, 1989
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Blast Vibration Frequencies: What Do They Mean?By Douglas A. Anderson
The US Bureau of Mines, in RI 8507, has shown that blast vibrations at low frequency are more likely to cause damage and complaints than those at higher frequency. Since that publication in 1980, the
Jan 1, 1992
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Analysis of Sympathetic Detonation in Detonating CordBy Abigail Styer, Paul Holmgren, Josh Calnan
Detonating cord is a staple of the explosives industry, used widely in the civil and defense industries. Detonating cord is a thin, flexible plastic tube filled with pentaerythritol tetranitrate (PETN