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Recent Projects - Downtown Demolition Dykon “withdraws” 13-story Columbia Bank from Kansas City skylineBy Jack Curran
KANSAS CITY, MO - Performing one of the most impressive urban building-implosion projects in recent memory, Tulsa, Oklahoma-based Dykon Explosive Demolition Corp. and Omaha, Nebraska-based Anderson Ex
Jan 1, 2003
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The History and Development of Permissible Explosives for Underground Coal MiningBy Robert B. Hopler
The hazards which naturally prevail in underground coal mines, always severe and unpredictable due to the loosely-consolidated strata in which coal is frequently found, are increased by the commonly-o
Jan 1, 1996
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Generating Site Specific Custom Blast Designs with Modern Blast Monitoring Instrumentation SystemsThe common approach of designing blasts on a trial and error basis is quickly coming to an end. When utilizing the full scale blast environment, trial and error can quickly become cost prohibitive and
Jan 1, 1991
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Development of a Wireless Sensor Network for Blast Monitoring and Slope StabilityBy Johnny Lyons-Baral, John Kemeny, Don Kraemer
Ground vibrations from blasting can result in the degradation and failure of rock and soil exposures, as well as damaging neighboring houses and buildings. At the same time, vibration provides an oppo
Jan 1, 2014
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Engineering Geophysics for the Mining and Construction IndustriesBy Douglas Rudenko
Most engineers, mine operators, or contractors acknowledge the importance of having accurate subsurface information in order to plan a project or solve a problem. Conventional methods of exploring the
Jan 1, 1998
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Synergy of Seismic, Acoustic and Video Signals in Blast AnalysisBy Brian W. Stump, David P. Anderson, John Wiegand
Mining explosions are designed for a variety of purposes including the fragmentation and movement of materials. The blast design is dependent on the particular application intended and the material pr
Jan 1, 1997
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Cast Blasting in the Light of the Electronic OptionBy Winfried Rosenstock
The development of electronic initiation systems has partially reached or will reach in a short period of time full reliability for general use without limitations. Unfortunately those systems meet wi
Jan 1, 2003
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Modeling Ground Motion in 3D Geologic Media from Fragmentation Explosions: Preliminary ResultsBy Donald Thompson, Jessie Bonner, Ileana Tibuleac
Predicting ground motion from complicated mining explosions is important for mines developing blasting programs in regions where vibrations must be kept below certain levels. Additionally, predicting
Jan 1, 2005
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Improvements in Quarry Blasting Cost EffectivenessBy P Cotton, N Cox
The Brisbane City Council has implemented a program of continual improvement at its Mount Coottha Quarry in the heart of Brisbane, Australia. The program has been underway for the past 6 years, and ha
Jan 1, 1996
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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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Blasting in Challenging EnvironmentsBy Richard Goodridge, Stephen Thomsqn, S Rodgers, D Tunaley
The mining, quarry and construction industries are facing’new challenges everyday. These challenges can be imposed by economic objectives or through external factors such as extreme geological conditi
Jan 1, 1998
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Pump Safety Tests Regarding Emulsion Explosives (48854aaa-273e-44f8-b19f-684e2e8c5647)By Hans Perlid
In the handling of emulsion explosives pumping is a key operation. A number of serious accidents has shown that pumping can be a risky operation and should be carefully considered and investigated. Th
Jan 1, 1996
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Expanded Rock Blast Modeling Capabilities of DMC_Blast, Including Buffer BlastingBy Dale S. Preece, J Paul Tidman, Stephen H. Chung
"A discrete element computer program named DMC-BLAST (Distinct Motion code) has been under. development since 1987 for modeling rock blasting (Preece & Taylor, 1989). This program employsexplicit time
Jan 1, 1997
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Application of Non-Newtonian Fluid Mixture for Stemming Performance OptimizationBy Braden Lusk, Paul Sainato, Josh Calnan, Hiago Vasconcelos, Luis Felipe Marinho
"Blasting and rock fragmentation is one the most important unit operations in mining. Since itsintroduction into the mine production cycle, mining has become more efficient in mineral production(Hartm
Jan 1, 2016
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Paper or Electronic Records – Ways to Improve Blast Documentation and RecordkeepingBy Travis A. Davidson, Ralph E. Burnham, Cathy Aimone-Martin, J. Kelly Ratliff
Blasters face a long list of tasks to execute daily—from vehicle inspections to blast design and layout, hole loading and tie-in, securing the site, and finally, safely executing the blast. Good pract
Jan 21, 2025
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Rock Fragmentation by Explosives: Myths and RealitiesBy Wilfrid Comeau
While researching for a theme lecture (Comeau, 1993l) on: 'The Mechanics and Physics Explosives', the author of Energy Transfer in Rock Fragmentaion by was confronted with many conflicting concepts re
Jan 1, 1995
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Unmanned Aircraft Systems Use in Blasting OperationsBy Lon Santis, Dale Ramsey
The use of aircraft to support blasting operations in mines, quarries and construction sites goes back to the early days of aviation. Invaluable at times, aircraft use has been limited by cost, the un
Jan 1, 2016
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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
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Principles of BlastingThe first principle one usually Learns about blasting is that cunpetence in this field is best gained by experience in making blasts rather than by reading a book or by listening to a lecture. The rea
Jan 1, 1989
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EUExcert a European Initiative for Improved Explosive CompetenceBy Roberto Folchi, Hans Wallin, Mara Battocchio
An understanding of explosives science and technology, and the competence to harness it is central to maintaining Explosives capability, national security, and in sustaining a competitive industry. A
Jan 1, 2013