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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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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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Influence of Distance in the Effective Use of Electronic Detonators to Control Blast Induced Ground VibrationsBy W. J. Birch, R. Farnfield
The use of electronic detonators to control blast vibrations has been previously established by many authors. This is performed by determining the optimum delay period between the blast holes for a pa
Jan 1, 2009
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Blastcad 3D - Three Dimensional Underground Blast Design SoftwareBy Patrice Favreau
In 1990 the Noranda Technology Centre commenced a project to develop an interactive three-dimensional blast design system using a commerical computer-aided drafting and design package (CADD). The obje
Jan 1, 1992
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High Resolution Seismic Refractin Temography for Determining Depth of Blast Induced Damage in a Mine WallBy J A. Singer, S R. Iverson, C A. Link
High resolution seismic refraction tomography has proved to be a useful tool to effectively estimate depth of blast induced damage in a mine face. Excavation blast damage can be as shallow as 1 to 2m
Jan 1, 2009
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Advanced Blast Modeling for Mining Steeply Dipping Coal SeamsBy Dan L'Heureux, Joe Haid, Stephen H. Chung
Most coal deposits in Western Canada involve steeply dipping multiple seams. An efficient way to recover coal seams would be to drill through the seams and blast both the overlying and underlying wast
Jan 1, 1998
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Blast Designs and Controls in Steeply Dipping Coal SeamsBy Ricardo Gaviria, Vincinte Acosta
There are major blast design and field procedures differences between conventional blasting in horizontally bedded coal seams and blasting underneath coal seams in a multi seam deposit with seam incli
Jan 1, 1995
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Strategic Public Relations for Underground Conservatory at Tennessee Governor’s ResidenceBy Jake Hutchison, Wade Hutchison
The opposition to the project has risen as a result of some political pressures and from public perceptions about the project’s necessity and its impact on the neighborhood. As a result of this contro
Jan 1, 2009
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3D Computer Simulation of Bench Blasting with Precise Delay TimingBy Dale S. Preece
"Detonation delay timing has been an important aspect of quality rock blasting for decades. Detonators that enable delay timing have improved over the years especially with the recent advent of precis
Jan 1, 2009
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Blast-Induced Heave Modeling in Three DimensionsBy Dale Preece, Ayman Tawadrous
This paper presents a number of examples of three-dimensional blast modeling in both surface and underground environments that include time-delay explosive decking. These examples include: 1) quarry b
Jan 1, 2014
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An Analytical Approach For Diagnosing and Solving Blasting ComplaintsBy Douglas Rudenko
Have you ever had a neighbor complain about a blast one day, but says the next day’s blast was better, even though the Peak Particle Velocity (PPV) increased? How about neighbors that complain about a
Jan 1, 2000
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An Integrated Explosive Management, Blast Design and Loading SystemBy Ola Lindahl, Mark Irving, John Hutchings
"Blasting is a process starting with a geometric description of the block of rock and ending with a pileof fragmented material. A key step in improving the productivity and quality control over the pr
Jan 1, 1997
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New Dimensions in Initiation SystemsBy Curtis G. Kremer
"New explosives initiation systems continue to be developed as new technologies make advancements possible. Due to recent initiator developments, explosives users now have the most reliable, accurate
Jan 1, 1991
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Production Blasting with Electronic Delay Detonators at Peak QuarryBy H G. Bosmare, G Bedser, C V. B Cunningham
Peak Quany has achieved substantial improvements to its bottom lie by giving close attention to blasting practice, and in pr@icnlar by introducing electronic delay detonators for routine production bl
Jan 1, 1998
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Lightning Detection and Warning SystemsBy William H. Highlands
Lightning is a natural phenomenon which poses a potential hazard to people, structures, and equipment unless adequate protection is provided. The type of protection required is related to the nature a
Jan 1, 1989
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Improved Blasting Using Low Density Ammonium Nitrate Prills; Improved Fragmentation via the Use of Blast Controls PlansBy Ron Frye, Carl Liibbe, Wayne Curtis, Julie Pecori, Dan Leach
Test work comparing the performance of a Low Density Porous Ammonium Nitrate Prill to regular Porous Ammonium Nitrate conducted in Pennsylvania and New York showed that less ammonium nitrate was requi
Jan 1, 1997
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Precision Detonators and Their Applications in Improving, Fragmentation Reducing Ground Vibrations and Increasing Reliability: A Look into the FutureThere remains considerable controversy in the industry regarding precision type detonators and where the end user can benefit from their use. In spite of the fact that electronic detonators and other
Jan 1, 1992
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On Board Excavator Dilution DetectorBy Benjamin Cebrian
Traditional dilution control systems range from computer modeling, use of physical markers on the field as polypipes to a technology that marks some control points where displacement is measured. The
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Seismic Refraction Surveying Techniques for Use in Blasting Design Optimization and Explosive SelectionBy John Dean Smith
"In many operations the two most overlooked aspects in the drilling and blasting process is theblast optimization and explosive selection. Often times we find a blast design that seems to work andprod
Jan 1, 1995
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Isolating Single Hole Vibration Signals from Multi-Hole ShotsBy Rob Famlield, Gavin Yuill, William Birch
The Blasting Research Group at the University of Leeds, in the United Kingdom, continues to be highly active in the area of the environmental impact of blasting. In recent years a major part of this r
Jan 1, 2002