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Metafex®: Safe, Energetic Explosive ReplacementsBy David Davison
Metafex®* is an inert material that is more energetic than explosives when activated. Because Metafex is inert until activated (a moment before use), it can profoundly change the logistics of systems
Jan 1, 2006
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Influence of shock wave propagating in case on the detonation characteristicsBy Fumihiko Sumiya, Hideki Hamashima, Shigeru Itoh, Shinya Tanaka
The detonation characteristics of non-ideal explosives, especially the emulsion explosives, are critically affected by the confinement of case. In this study, we focused the shock wave propagating in
Jan 1, 2007
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Study on Safe Criterion of Blasting Excavating Oil-Gas Pipeline DitchesBy Qi Shifu, Guo Tao, Liu Haoquan, Yao Chaogui, Zheng Li
Abstract: To excavate oil-gas pipeline ditches in a rocky region or area the explosive method is needed. When a parallel ditch is to be dug by blasting near or in the vicinity of an existing pipeline,
Jan 1, 2014
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The Impact of Blasting on Pit Slope StabilityBy Pefer F. Stacey
This paper considers some of the trends in slope design technology that are emerging as we approach the 21st Century. While the ability to design stable slopes has unproved greatly over the past 20 ye
Jan 1, 1994
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SCB Technology for New Electronic and Fiber-Optic Based Detonators and Initiation SystemsBy W Barry Gregg
The rock blasting and mining industries use a system of detonators and explosives for mining operations. Many detonators use small metal bridgewires, which are heated by passing a current through the
Jan 1, 1992
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A Classic Experiment with Air Overpressure and WindowsBy Charlie Adcock, Rob Farnfield, Andy Wetherelt
The ISEE Blasters Handbook gives guidance on the level of air overpressure likely to cause occasional window breakage (151dB) and general window breakage (171dB). A long-term safe level of 140dB is al
Jan 1, 2006
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Pre-Splitting With The New AIRDEK TechniqueBy David G. Borg, John Bussey
The new AIRDEK (tm) technique for pre-splitting in surface coal mines produces highwall conditions that have greater safety with lower costs for explosives, labor, and drilling. Successful application
Jan 1, 1988
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Simple Models for Gas Flow and Burden Movement During BlastingBy Italo Onederra, Jason Furtney, Ewan Sellers
The detonation reactions occurring during rock blasting result in high pressure gas phase products from the condensed explosives typically used in mining applications. After detonation and the initial
Jan 1, 2012
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Sappington Bridge: An Opportunity for Strengthening Research and Demolition TrainingBy J. Baird
The Sappington Bridge, a steel arch span bridge constructed in 1904 over the Meramec River, was demolished due to its advanced state of deterioration. The demolition was a project to benefit Crawford
Jan 1, 2003
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Super Cautious Contour Blasting UndergroundBy Stig O. Olofsson
The problem of overbreak in underground construction and mining is normally approached by a variety of smooth blasting methods. Numerous small diameter, low velocity explosives have been developed spe
Jan 1, 1994
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Benefits of Power Decks in BlastingBy Marlyn King, Kevin Peterson
Power Decks are voids created in the bottom of the borehole through the use of a suspended Super Plug. Explosive energy is started downward at initiation creating high pressures which find relief at t
Jan 1, 2002
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Determining and Mitigating the Effects of Firing a Linear Shaped Charge UnderwaterBy Brian T. Burch, Paul N. Worsey
When fired, submerged Linear Shaped Charges (LSCs) lose all effectiveness in the cutting of steel. Users in underwater applications have reported having to substantially increase the charge size to th
Jan 1, 2015
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Modeling of Dynamic Break in Underground Ring BlastingBy Troy Williams, Chris Preston, Ian Lipchak
"Underground blasting operations are challenging from the standpoint of the distribution of explosivesenergy representative of ring blasting. Energy from both shock and pressure regimes of commerciale
Jan 1, 2016
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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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Advanced Technology for Blast Design, Execution & AssessmentAQUILA Mining Systems Ltd., designs, develops and delivers systems for measurement, analysis, simulation, control and automation to the mining, construction and petroleum industries. The objective of
Jan 1, 1994
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Relationship between peak particle acceleration, velocity and displacement of blast vibrationBy Ruilin Yang
The following simple equations are frequently used within the blast vibration community;PPA f PPV v = 2p · , PPV f PPD d = 2p · ,a f PPV PPA 2p = , and v f PPD PPV 2p = where, PPA is the peak particle
Jan 1, 2012
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Engineering Field Controls and Hole DeviationBy Mick Fritz, Tom Treleaven
The success of any blast is dependent on the accuracy of the blast design and field controls placed at the shot location. The procedure by which the data is collected and analyzed is paramount to acco
Jan 1, 1998
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A Numerical Study of Bench Blast Row Delay Timing and Its Influence on Percent-CastBy Dale S. Preece
The computer program. DMC Qistinct Motion &de), which w&s developed for simulating the rock motion associated with blasting, has been used to study the intluence of row delay timing On rock mOtiOn. Th
Jan 1, 1994
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World-Wide Survey of Distress Blasting Practice in Deep Hard Rock MinesBy Marwan M. Mohammed, Hani S. Mitri, Wilfrid Comeaul, Baoyao Tang
In many parts of the world, rockbursts have become a major problem of mining at depth. As orebodies are being mined deeper, rockburst phenomena have become familiar to deep hard rock mines. Rockbursts
Jan 1, 1999
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AEL Ring 2000While ring-blasting techniques offer substantial benefits, there are intrinsic problems that are exacerbated when large blocks of ore are mined in attempts to improve the production economics. These p
Jan 1, 2000