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Reactive Ground Blast Management in a South Africa Open Pit Manganese MineBy Grant Small, Deon Pieterse
Reactive ground conditions at an open pit manganese mine in the Northern Cape of South Africa resulted in an unexpected detonation.
Feb 1, 2020
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Vibration Control in the Community and Cost Optimization by Applying a New Generation of Controlled Energy Explosives.By Kinross Paracatu, Victor Morais, Luis Marinho, Rolando Fuentes, Lucas Steffen, Leopoldo Muñoz, Washington Vilas
Nowadays, mining operations close to communities face increasingly challenges, especially in their drilling and blasting operations. One of the critical effects are the ground vibrations produced in i
Feb 6, 2023
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Reducing Impact on the Wall Generated by Blasting and Increasing Slope Design Adherence Using Controlled-Energy Explosives and Presplitting TechniqueBy Orica Chile, Orica Brasil, Orica Brasil Victor Morais, Kinross Paracatu Leopoldo Muñoz, Kinross Paracatu Luis Marinho, Gubio Barsottini, Orica Brasil José Vergara, Lucas Steffen, Orica Brasil Washington Vilas
In drill and blast activities, it has been a challenge to sculpt walls accordingly to what has been designed in state-of-art mining design software. Obviously, the perfection of making neat and smooth
Feb 6, 2023
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Journal: Blastserve A Discussion Forum for ISEE Members (8c2fadf8-c3ea-4d52-bed4-9f74e7ae96c9)Lightning Strikes on Vehicles Transporting Explosives The police in one of the countries in which we operate has asked about the consequences of a lightning strike on a vehicle (box van) carrying deto
Jan 1, 2011
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Improvements in Blasting Technology at Cliffs Natural ResourcesBy Scott Giltner, Allan Koski
Blasting is one of the lowest cost yet most critical parts of the mining cycle. This paper discusses the findings of an audit conducted on the blasting operation at an iron ore mine. The purpose of th
Jan 1, 2009
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The Application of GPS Positioning and Drill Monitoring TechnologyBy Carl Hendricks
AQUILA Mining Systems Ltd. is the world leader in drill monitoring, control and GPS based drill navigation systems for the mining industry. This paper will review the general design and application of
Jan 1, 2002
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Unusual Accidents Caused by ESDBy James G. Stuart
For precise control and timing of a blast, people use electric detonators. Most of these contain a fine metal “bridgewire,” that heats to the required burning temperature when electric current passes
Jan 1, 2005
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Blasting Parameters for Concrete Fly-OversBy Bob de Raadt
The main problem in blasting a fly-over spanning a main road is the brief time available for blasting and the removal of the debris, in order to minimize the ensuing traffic disruption in the public h
Jan 1, 1984
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Improvements in Quarry Blasting Cost Effectiveness (6a7d22cc-a510-497b-89ee-1733ae928c9c)By P Cotton, N Cox
The Brisbane City Council has implemented a program of continual improvement at its Mount Coot-tha Quarry in the heart of Brisbane, Australia. The program has been underway for the past 6 years, and h
Jan 1, 1995
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Measurement of Blast Induced Damage in Wall Rock for a Selection of Underground Perimiter Blasting TechniquesBy Paul N. Worsey
Disturbed zones of rock have been measured for blasted highway rock cuttings by Matheson and Swindells of the Transport and Road Research Laboratory (TRRL) of Great Britain. These zones have been show
Jan 1, 1985
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Fines Reduction Program at the Canadian Salt CompanyBy John M. Bolger, Keith E. McMaster
Excessive salt fines are undesirable in underground salt mining as they are considered a costly waste byproduct. This paper describes an extensive explosive application program conducted at The Canadi
Jan 1, 1996
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Pneumatic Loading of ANFO UndergroundBy J J. F Smith
The application of pneumatically loaded ANFO for underground mining has continued to increase year by year since the technique was first developed and introduced underground during the early 1960's. I
Jan 1, 1982
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Application of Full-Face Round by the Sequential Blasting Machine in Tunnel ExcavationsBy Young-Dong Cho, Han-uk Lim, Bok-Ki Park, Sang-Eun Lee
Many methods and techniques have been developed to reduce ground vibrations. Some of them are an adoption of electric millisecond detonators with a sequential blasting machine and an improvement of in
Jan 1, 1995
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Explosive Induced Damage Potential to Earthfill Dams and EmbankmentsBy D O. Doehring, W A. Charlie, W A. Lewis
The detonation of explosive charges releases large quantities of energy that can produce rock and soil deformations far from the detonation point Extensive data are available on blasting in general an
Jan 1, 1987
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Reduction of Air Blast and FlyrockBy Don Rapp, Rufus Flinchum
Air blast and flyrock are two of the most critical concerns facing the blaster of today. This paper will provide the blaster with proven procedures for recognizing open face and bench surface problems
Jan 1, 1993
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Hard-Particle Size Distributions for Soild Explosive IngredientsBy Michael Wieland
Delay blasting in underground coal generates shock waves and rifting forces that damage charges remaining in the blast pattern. Damaged charges detonate poorly, raise fume toxicity and reduce coal bre
Jan 1, 1992
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Mass Blast of Pillars Using New Blasting TechniqueBy Ingvar Hansson, Bjorn A. Jonsson, Bernt Larsson
In the Kiruna Research Mine, Sweden, four large open stopes have been mined, leaving intermediate piIlars and crown pillars. At the final stage of mining mass blasting of the crown pillars above two o
Jan 1, 1986
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Blast Control for the Hydroelectric Project "El Cajón" in the State of Nayarit in MexicoBy David Yanez
The hydroelectric project "El Cajón" is currently under construction in the state of Nayarit, on the Santiago River, in western Mexico. This project is comprised of a Concrete Face Rockfill Dam (CFRD)
Jan 1, 2006
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Impact Sensitivity of DetonatorsBy Paul Worsey, Randall Franklin
This paper is based on an undergraduate research project undertaken for the explosives emphasis in the UMR mining engineering degree program by the first author. The purpose of the selected research t
Jan 1, 2004
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Fire Protection Provided by Detonator ContainersBy Lon D. Santis
The Code of Federal Regulations Title 30, Parts 56, 57, 75, and 77 require that detonators and explosives be separated by four inches of hardwood or equivalents when transported together in mines. Thi
Jan 1, 1997