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Overcoming Emulsion Destabilization Caused by Common ContaminantsBy Ian Tolliday
Emulsion Explosives manufacturers are aware of the destabilizing effect that the presence of inorganic impurities such as magnesium and iron and organic impurities such as naphthalene sulfonates and a
Jan 1, 2018
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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 Windows PC Code for Computer Explosives PerformanceBy Ed O'Connor, Per-Anders Persson, Manhong Zhou
This chapter deals with the concepts of shock waves and detonation waves together, because a detonation wave is really a shock wave, supported by the explosive reaction that the shock wave ignites and
Jan 1, 1997
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Vibration and Flyrock Control Through Better PredictionsBy Daodu Opeyemi
This paper describes several damages of blasting operations on some case studies, analyzes causative factors, and emphasizes preventive measures. Due to several complaints from some host mining commun
Jan 1, 2009
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High Profile Project in Historic Affluent Nashville Neighborhood Poses ChallengesBy Brent Coleman, Wade Hutchison
The Montgomery Bell Academy project is a parking garage structure topped by a soccer field. This project included expanding parking and moving the present tennis courts. The project is located adjacen
Jan 1, 2012
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Multiple Controls to attenuate damage in Final Pit WallsBy Daniel Vargas Quispe, Yorhinio León Robles, Marco Jauregui Vargas, Helen Espinoza Bailon, Oshin Quispe Luya
This project describes the methodology applied during the execution of tests to determine the multiple controls that mitigate damage to the final walls of the pit. The different tests were executed on
Jan 21, 2025
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Journal: 100 Years / As you can see above, the title of these articles includes the words “More or Less.” In this issue I’m going to take advantage of that, and print a few things that I’d never be able to share if I adhered strictly to the “100By Robert Hopler
GEO. M. MOWBRAY’S REFRIGERATOR CAR FOR THE SAFE CONVEYANCE OF EXPLOSIVES. It is a fact well known to all miners who have used nitro-glycerin, or any of its adulterations, commonly known as dynamite, r
Jan 1, 2011
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Computer Simulation of Explosive Demolition of Structures By Using Nerual NetworkBy Gungor Tuncer, Erhan Bakirci, Ali Kahriman, Atilla Ozmen, O. Nuri Ucan, Savas Gorgun
There are several methods for demolition of structures but most of them depend mostly on conventional ways of using machines for breaking and crushing structural elements. However the need for lots of
Jan 1, 2002
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Wave Analysis and Determination of Interference Times to Minimize the Impact of VibrationsBy Carlos Pañura, Michael Geldres, Alejandro Rojas
The vibration waves are produced by the detonation of the explosive charges of each blasthole, analyzing the vibration waves produced by each blasthole, allow us to determine the optimal time between
Feb 1, 2020
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Underwater Explosions: Natural Resource Concerns, Uncertainty of Effects, and Data NeedsBy Marion Smith, Thomas M. Keevin, Dennis G. Wright, Gregory L. Hempen, Joel B. Gaspin, Thomas L. Linton, Gregg R. Gitschlag
"A Natural Resources Working Group, within the International Society of Explosives Engineers, reviewed published environmental effects data, identified data gaps, and prioritized data collection needs
Jan 1, 1999
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Reducing Impact on the Wall Generated by Blasting and Increasing Slope Design Adherence Using Controlled-Energy Explosives and Presplitting TechniqueBy Orica Chile, Orica Brasil, Orica Brasil Victor Morais, Kinross Paracatu Leopoldo Muñoz, Kinross Paracatu Luis Marinho, Gubio Barsottini, Orica Brasil José Vergara, Lucas Steffen, Orica Brasil Washington Vilas
In drill and blast activities, it has been a challenge to sculpt walls accordingly to what has been designed in state-of-art mining design software. Obviously, the perfection of making neat and smooth
Feb 6, 2023
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The Use of Electronic Detonators to Control Air BlastBy Andy Hudson, Stuart Brashear, David Lilly
Because of greatly increased timing accuracy, electronic detonator systems are a well-known and widely accepted major tool to control and reduce ground vibration. At a Southeastern quarry the authors
Jan 1, 2009
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Mine Expansion Towards Blast Sensitive AreasBy Scott G. Giltner, Alex Schwenk
An iron operation sought to extend the life of the mine by conducting a major pit pushback in an area close to several public structures and the neighboring town. The result of the pushback would make
Jan 21, 2025
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BURST BLASTING: Solution to a Particular Blasting ProblemBy Wilfrid Comeau
Vibrograms, which last significantly longer than the actual blast (say 10 to 15 cycles or more), may be signalling an elastic response, which is not uniquely blast related. For example, geophones moun
Jan 1, 2007
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Preventing Slope Failure: Establishing Safe Vibration Limits in Discontinuous Rock MassesBy Jorge Cardenas, David Martinez
Blasting-induced vibrations can be predicted with high precision, allowing for the optimization of sequence design, delay timing, and charge configurations to minimize their indirect impact on rock ma
Jan 26, 2026
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Gurney’s Journey—pipe-bomb Fragments And FumesBy Michael Wieland
The thrust of this report is to overcome some of the technical deficiency in the scientific methodology that correlates the work output during a charge explosion to the resulting toxic fumes. Thermody
Jan 1, 2010
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The Other Building Boom: Guidelines for the Technical Application of Explosives to Industrial and Commercial Structure DemolitionBy Walt Meglasson
"Developing technologies in demolition equipment and processes have produced a newsophistication within the demolition industry. Yet, with increasing frequency, owners,architects, engineers, and contr
Jan 1, 1993
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A non-toxic, safe and reliable non-primary-explosives detonatorBy Marco Antonio Falquete
Conventional detonators and blasting caps make use, as igniters, of flame-shock-, andfriction-sensitive primary explosives, such as lead azide, lead styphnate, mercury fulminate, etc, most of them sev
Jan 1, 2007
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Fire Protection Provided by Detonator ContainersBy Lon D. Santis
The Code of Federal Regulations Title 30, Parts 56, 57, 75, and 77 require that detonators and explosives be separated by four inches of hardwood or equivalents when transported together in mines. Thi
Jan 1, 1997
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Geomechanical differentiation of cratering mechanisms with two degrees of freedom and burden dependency investigated through single hole blast tests.By J. D. Aubertin
Rock blasting is a complex engineering process that requires in-depth knowledge of operations and geomechanical conditions. Acknowledged design precepts are based on cratering behavior associated with
Jan 1, 2024