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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
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Geologic Considerations in BlastingBy Michael Laing
"Geology plays a critical role in many aspects of blasting, from fragmentation to wall control. One often overlooked component of blasting concerns blast results due to the effect of geologic features
Jan 1, 2016
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Tigerwin - A Window PC Code for Computing Explosives Performance and Thermodynamic PropertiesBy Per-Anders Persson
This chapter deals with the concepts of shock wave8 and detonation wavea together, because a detonation wave is really a shock wave, supported by the explosive reaction that the shock wave ignites and
Jan 1, 1998
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Experimental Investigation into the TNT Equivalency of Electric, Non-Electric and Electronic DetonatorsBy Emily Johnson, Catherine Johnson, Ben Sonpon, Kelly Williams
The effect of length to diameter of the detonator is compared using Ansys/Autodyn 2-D simulations, the results of which are validated experimentally. It was found that higher pressure comes with a lar
Feb 1, 2020
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Preventing Blast Damage to Underground Infrastructure from Open Pit OperationsBy C. Liley
Open cut blasting at the Ernest Henry mine has the potential to cause damage to nearby underground workings. This paper is a case study of the blast vibration management project which was conducted to
Jan 1, 2012
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Influence of Burden on Intensity of Ground Vibrations and Air Overpressure in Opencast Bench BlastingBy AK Chakraborty, AK Raina
Burden of drill hole is third most sensitive parameter effecting the ground vibration in blasting apart from maximum charge per delay and distance. Various types of burdens can be seen in practical be
Jan 1, 2004
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Prediction of Fines in Mining and Quarrying Applications Using the Fracture Density Model (FDM)By C. Mick Lownds, Dale S. Preece, Ali Bhuiyan
FDM (Fracture Density Model) is a three-dimensional mechanistic model of blast induced rock fragmentation. FDM uses several computational mechanics algorithms to simulate the effect of blasting in dif
Feb 6, 2023
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Experimental Method to Evaluate the Vibrational Behavior of low Energy Explosives and Their Impact on Slope Damage ControlBy P. Lozada
The objective currently demanded from controlled blasting techniques is to minimize damage to the remaining rock mass while protecting the integrity of mine walls and ensuring the quality of the fragm
Jan 1, 2024
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Explosive Compaction of Foundation Soils for the Seismic Upgrade of the Seymour Falls DamBy Frank Huber, Ed Fulop, Neil Singh, Ron Elliott, Blair Gohl, Lewis Clarke
This paper covers the successful application of explosive compaction technology for the densification of the foundation soils for the seismic upgrade of the Seymour Falls Dam, Vancouver, BC. The origi
Jan 1, 2009
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Small Scale Model Testing in Investigations of Energetic Material -- Dynamic Effects LaboratoryBy L C. Taylor
Very small scale testing has been shown to be able to predict quite accurately, in many situations, the results of full scale testing. Small scale tests are more cost efficient, easily observed, and e
Jan 1, 2012
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Off-The-Shelf Cellular-Based Magazine SecurityBy Lon Santis, David Buckwalter, Ken Steinmetz
This paper describes a magazine security system using two readily available cellular telephone-based technologies. The system is comprised of vibration sensors and remote cameras. The system is used a
Jan 1, 2014
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Daveytronic Digital Blasting SystemBy Advanced Initiation Systems Inc
10 years in R&D Last 5 years available commercially Worldwide Met strict approvals for manufacturing and use
Jan 1, 2004
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Threshold Shock Initiation Parameters of Liquid Phase Ammonium NitrateBy Allan King
Ammonium Nitrate (AN) is most commonly encountered as either a prilled solid or a highly concentrated aqueous solution, with or without organic ( e.g amine) nitrates. Under certain conditions of fire
Jan 1, 2008
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Research and Application on Channel-Type Non-Mechanical Stirring Emulsion Explosives ProductionBy Guo Ziqing, Tang Qiuming, Liu Yuanyuan
The channel-type non-mechanical stirring production process is a new developed technology for emulsion explosives in recent years. It removes traditional equipment such as mechanical-mixing emulsifica
Jan 21, 2025
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E7B Sector Drilling and Blasting Challenges and LearningsBy Robert Jacob Cefalo, Rio Tinto Kennecott
At the end of 2016, the Mine started a new ore phase in the section of the pit located on the East Wall. The East Wall geological structures required controlled blasting for peak particle velocity (PP
Jan 1, 2019
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Seismic Modelling Control Of Blasts In A Nuclear Power PlantBy Alain Blanchier, Pascal Bernasconi
Blasting operations took place on Channel coast NW of France to extend Flamanville Nuclear Power Plant (EPR new generation). The closest operating reactor building was monitored by a 24 remote vibrati
Jan 1, 2008
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Shockwave Consolidation to Densify Powders into a Bulk MaterialBy David Nemir, Jan Beck
A challenge in materials science is the production of a bulk solid material from a powder precursor. One solution is to use shockwave consolidation whereby a ductile tube is loaded with the powder of
Jan 1, 2016
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Modelling Complex Shock Tunnel for Shock Interaction and Transfer TestingBy Catherine Johnson, Barbara Rutter
The shock tunnel located at the Missouri University of Science and Technology Experimental Mine is 65 feet 9 inches (20.0406 m) in length. The tests performed inside of this tunnel are either arena te
Jan 1, 2018
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CO Migration from Trench Blasting in Amherst, New YorkBy Marcia Harris, Richard Mainiero
The New York State Department of Transportation recently commenced highway widening and drainage improvement projects in Clarence and Amherst, NY. Drainage improvements including the installation of s
Jan 1, 2004
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Predictive Modelling for Equipment Blast Exclusion Zone ReductionBy Kim Henley, Chris Batten
This paper discusses the use of the Orica WildFireTM flyrock model to help mining operations in Australia and Asia minimise blast exclusion zones for equipment, increasing utilisation and productivity
Feb 1, 2020