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Effect of Explosive Type on Particle Velocity Criteria in Ground VibrationBy SMF Hossaini
With the aim of a clearer understanding of the applicability of existing empirical equations for blast induced ground vibration, an investigation has been conducted on three mostly applied forms of su
Jan 1, 2004
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Expansion of the Panama CanalBy Tom Treleaven
The widening of the Panama Canal to approximately 130 feet (40 m) for its entire length began just a few years ago. The original expansion program was slated for completion in 18 to 20 years, but has
Jan 1, 1997
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Explosively Loaded Vessel for Dynamic Experiments at Advanced Photon SourceBy Christian J. Sorensen, Christopher Armstrong, Andrew Matejunas
A team consisting of junior and senior mechanical engineering students at New Mexico Tech worked on the design of an explosively loaded vessel, with a maximum load of 15 grams (0.53 oz) TNT equivalent
Jan 1, 2015
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Monitoring and Prediction of Blast Vibrations : A Case StudyBy D Vidyarthi
Blasting is the most important activity in the mining industry, the world over. It is a well known fact that only part of the explosive energy gets utilized in causing the actual rock fragmentation. T
Jan 1, 2007
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Novel Impulse Instrumentation for Buried Explosive ChargesBy Phillip R. Mulligan, Kevin Gantz, Aaron J. Ward, allen shirley, Sean Treadway
Understanding the impulse transferred into a structure by the coupled two-phase loading produced by an explosive charge buried in soil is of interest for various applications. The most common impulse
Jan 1, 2016
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Using New Radio Frequency Identification to Improve Scheduling and System Management of Rock Excavation and TransportBy Luis Valentim, Terry Cousins
The goal of a mine is to produce ore at the lowest possible cost with due regard to safety of pemonnel and equipment. The mining process consists of a number of discrete operations such as planning, d
Jan 1, 1998
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An Experimental Method for Producing a Micro-Particle Ammonium Nitrate (MP-AN)By Christopher Jon Preston
This paper describes a type of ammonium nitrate (AN) produced in a patented experimental atomization/aerodynamic process. This AN exhibits outstanding properties for use as a main ingredient to a new
Jan 1, 2015
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Presplitting Techniques for Conventional, Air Deck and Dimension Stone Applications"The objective in controlled blasting is to reduce overbreak to control the final pit wall slope, shaft, drift ditch, bench, etc. to the final planned excavation limit. The six main types of controlle
Jan 1, 1994
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Optimization of Blast Fragmentation at Kisladag Gold MineBy Erkan Bayrak, Serkan Erkara, Ozkan Duzgun, Ekin Gungor
This paper presents part of the outcomes of the drill and blast optimization project carried out at Kisladag Gold Mine in Turkey. Kisladag Gold Mine is the largest gold mine in Turkey with a low-grade
Jan 1, 2015
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Selection of Powder Factor in Large Diameter Blastholes (9dd28d4c-e692-46ff-9e71-b2043e0b42a0)By Jack Eloranta
This paper documents the relationship between material handling and processing coete compared to blasting cost. The old adage, "The cheapest crushing is done in the pit", appears accurate in this c!as
Jan 1, 1995
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Top Hammer Drilling-The Way Things WorkBy William D. Hissem
For those blasthole applications which require the use of holes ranging from 1” to 5.5” in diameter, the use of top hammer drills has been the equipment of choice for several generations of drillers.
Jan 1, 1998
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Updates in the Determination of Dynamic Pressure TestsBy Alejandro Ferrada Vergara
Most blasting techniques that are designed to improve fragmentation and subsequently improve ore work index to downstream comminution processes, apply powder or energy factor increases, either by stre
Jan 1, 2016
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New Innovations in Drilling and Bit Technology, "Integrated Sectional Drill Steel System"By Steve Collinsworth, Nils Heinke
In 1989, I realized the definite need for change in the Blast Hole Drilling Industry. With over 25 years of experience in dealing with the industry, I am well inGormed and educated concerning the prob
Jan 1, 1997
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Close - In BlastingBy Adam Gray, Emery Gray
State-of-the-art seismographs can be employed to assist the blasting engineer in understanding the propagation of vibration waves generated by blasting. Wave traces and frequency plots are used to adj
Jan 1, 2005
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Computer and Centrifuge Modeling of Decoupled Explosions in Civilian TunnelsBy Neil T. Davie, Thomas K. Blanchat, Thomas C. Togami, Joe R. Weatherby, Dale S. Preece, Robert A. Benham, James J. Calderone
"Geotechnical structures ,such as underground bunkers, tunnels, and building foundations aresubjected to stress fields produced by..the gravity load on the structure and/or any overlyingstrata. These
Jan 1, 1998
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Next Generation Laser Surveying Systems! Blast Design and Analysis SoftwareBy Steve Colbum
LTl’s MapStar LPS (laser positioning system) utilize both tripod mounted and hand held reflectorless distance meters. These are eye safe, easy-to-use, and specifically designed to endure the harsh env
Jan 1, 2000
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Blast Simulation Surface and Underground with the SABREX Model (f3efe068-6266-482f-a4f6-907b809beffa)By G K. Jorkenson
The SABREX Blast Modelling Program was developed joinlly by the companies of the ICI Explosives Group. of which C-I-L Inc. is a member. SABREX (Scientific Approach to Breaking Rock with Explosives) is
Jan 1, 1989
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Blast Designs and Diagnostics Using Portable, Solid State, High-Speed Videography SystemsBy Bruce Vandenberg, R. Frank Chiappetta, John Foley
Recent advances in solid-state, field portable, fast framing compact video camera systems and PC based frame capture hardware now allow blast imaging up to 1000 frames per second. Up to 4.1 seconds of
Jan 1, 2000
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Why We Keep Blast ReportsBy Paul Kunze
For some of us, the most disagreeable part of being the blaster- in - charge is doing the required paperwork. Cost coding on time cards, drilling reports, magazine inventory logs, and blast records al
Jan 1, 2004
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Explosive Destruction of an Underground Reinforced Concrete Bunker – Computer Hydrocode SimulationBy Dale Preece
A carefully designed and controlled in-place destruction experiment was performed on a concrete bunker buried in 4.27 m (14 ft.) of soil. The objective was to determine if the explosive charges would
Jan 1, 2006