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Development of Water-Resistant Granular ExplosivesBy Atsuo Inoue, Toshihiro Ogata, Hideaki Sugihara
Generally in Japan, since ANFO has easy handling and low-price, it is most used as industrial explosives. However, ANFO is very easy to dissolve in water, it is difficult to use under existence of wat
Jan 1, 2005
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Blasting In Hong KongBy R L. Keller
Hong Kong has some of the most restrictive practices regarding blasting than any place in the world. Regulations regarding vibration limitations are 1 in/sec for structures and 0.5 in/sec (or even les
Jan 1, 1997
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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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Pressures Acting on Targets Subjected to Explosive LoadingBy Leslie Taylor, Uli Leiste
In this paper, results from small scale testing conducted to determine pressure time profi les acting on a plate (taken to represent the bottom of a vehicle) at any given distance from the center of t
Jan 1, 2008
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Emulsion Comparison TestsBy R W. Givens
Comparison tests were performed on 6 emulsion concentrates, 3 microballoon sensitized emulsion concentrates, and 2 water gel concentrates from 8 different sources with ANFO used as a control standard.
Jan 1, 1990
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Prediction and Determination of Explosive-Induced FractureBy J R. Hearst, T R. Butkovich
Explosive-induced fracturing and permeability enhancement far from a free face were studied. A one-dimensional computer program, SOC, was used to predict the total failure-associated distortional stra
Jan 1, 1976
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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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Ten Year US Eleven State Study of Blasting Damage ClaimsBy Eric Grigoryan, Wade Hutchison
An engineering study of 2,250 blasting damage claims from 1999 to 2008 in Tennessee, Kentucky, Virginia, Nevada, California, Georgia, South Carolina, North Carolina, Alabama, Arizona and Utah were inv
Jan 1, 2009
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Highwall SafetyBy John C. Didlinger, John L. Didlinger
As we begin the pre-blast survey we need to decide on the number of holes needed for production and a detailed highwall inspection. The survey consists of checking the highwall and placement of barrie
Jan 1, 1996
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Numerical Modeling of the Effect of High Stresses on Blast Induced DamageBy A. S. Tawadrous
The stress field around a detonating charge in a borehole was calculated using AUTODYN for a variety of in-situ stress conditions. Calculations were conducted for zero in-situ stress, hydrostatic cond
Jan 1, 2007
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Evaluation of Schedule IV-Type ContainersBy D Wilson, E Nagy, R A. Augsten, R R. Vandebeek, R L. Guilbeault
The Canadian Explosives Research Laboratory (CERL), is evaluating the status of the Schedule IV explosives container as it presently pertains to the industry. The Schedule IV container serves the same
Jan 1, 1990
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Computer Assisted Blast Design and Assessment ToolsBy Thomas H. Kleine, Alan R. Cameron, William W. Forsyth
In general the software required by a blast designer includes tools that graphically present blast designs (surface & underground), can analyze a design or predict its result, and can assess blasting
Jan 1, 1995
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Low Frequency Long Duration Blast Vibrations and Their Effects on Residential StructuresBy A. K. Sirveiya
A major concern with blasting at surface mines is generation of ground vibration, air blast, flyrock, dust & fume and their impact on nearby structures and environment. A study was conducted at a coal
Jan 1, 2005
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Application of Air Decking to Blasting - Finding from Numerical ModellingBy P. D. Katsabanish
Air decking applications are examined using numerical modelling and the AutodynTM code. The mechanism of damage is illustrated and discussed. Air decking is shown to provide advantages over stemming w
Jan 1, 2005
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Journal: Safety Talk / Highwall Safety from a Blaster’s PerspectiveBy W. Reisz
The fear of heights is a natural defense against performing a dangerous and unnatural act such as standing on the edge of a hundred foot wall. Yet through familiarity, a casual attitude often exists.
Jan 1, 2009
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MINIMIZING RISK IN URBAN QUARRIES (Two Case Studies)By James Goldberg, Sally Zadra, Wiliam Reisz
Early recognition and risk assessment is critical to sustaining a safe and productive blasting operation. While every blasting environment holds inherent risk, highwall blasting in highly congested ar
Jan 1, 2008
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Investigation to Determine the Origin of Air Overpressure from Quarry BlastingBy R. Franfield, W. J. Birch, L. Bermingham
Previous researchers have put forward two different theories as to the origin of air overpressure from quarry blasting. In 1980, Siskind et al postulated that the initial face movement gave rise to th
Jan 1, 2013
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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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Public Relations Workshop ISEE Public Education and Public Relations CommitteeBy Dave Harrison, Phyllis Hasser, Ken Eltschlager
The beginning There was the video:– “Understanding Vibrations from Blasting” – 2002 to 2004 in development – Dale Ramsey ad hoc Public Education committee chair – Available At the ISEE bookstore Publi
Jan 1, 2007
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Blasting with ANFO/Poylstyrene MixturesBy Karl Kure, Anders M. Heltzen
Mixtures of prilled ANFO and 0,5 - 3 mm polystyrene balls are interesting substitutes to the tube charges or other types of reduced explosives or detonation fuses. Experiments have shown detonation ab
Jan 1, 1980