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RF Hazards to Electric Detonators – The New IME SLP-20By David Leidel, Beth Shimer, James Stuart
Periodically, the Institute of Makers of Explosives Safety Library Publications are reviewed, edited and updated to reflect recent technical developments, new commercial explosive products and new reg
Jan 1, 2012
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Blasting and Its Control at Hydro QuebecBy Wilfrid Comeau
Since 1967 Hydro Quebec has undertaken the control of blasting and its effects at its power development sites. Blasts have been monitored using a commercially available three component seismograph. In
Jan 1, 1977
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Use of Visualization Tools for Drill and Blast ActivitiesBy Carlos Alvarado, Hernan Narea, Jhon Silva, Bryan Townsend, Katherine Gil, Brayan Caceres, Felipe Pontanilla
With the promising development of new technologies, automation in Drill and Blasting (D&B) is on the horizon. The data generated in all D&B activities, which is currently segregated, can be linked to
Jan 21, 2025
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Modernizing Operations: Leveraging GIS in Drilling, Blasting and Quarry ApplicationsBy Dr. Anurag Agrawal, Steve Franklin, Clint Zimmerman, Elijah Williams
In a time when data has become a highly valued commodity within many mining and quarry operations, managing large amounts of current and historical information can be difficult. If not managed properl
Jan 21, 2025
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Dust Control in the Environment Using New Technologies and Blasting Techniques.By L. Muñoz, L. Steffen, W. Vilas
The emission of particulate material is one of the several parameters related to environmental control in mining operations near communities. Blasting is an event that generates and leaves a large amo
Jan 1, 2024
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Mitigating Loaded Blast Patterns Buried Beneath a High Wall FailureBy Aiden Carey, Jim Kennedy
During December 2007, Lake Cowal Gold Mine located in New South Wales, Australia experienced a significant pit wall failure. The wall failure resulted in the deposition of a large quantity of saprolit
Jan 1, 2011
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Principal Component Analysis Of Vibration And Air BlastBy John Cory, David Lily, Bill Hissem
The Lafarge granite quarry in Cumming, Georgia is using Principal Component Analysis (PCA) and Biplot charting to identify important variables and control air blast and vibration. Every blasting situa
Jan 1, 2010
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Flyrock Prediction and Control in Surface Mine BlastingBy J Lyall Workman, Peter N. Calder
Flyrock can be a serious hazard associated with blasting. Many surface blasting accidents involving injury result from excessive flyrock beyond the protected blast zone. Numerous cases of equipment da
Jan 1, 1994
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Production Blasting at the Empire MineBy G J. Kulbieda
The Empire Mine initiated production in 1963. Since then the unit operations of drilling and blasting have evolved continually in order to meet the increased mining requirements demanded by plant expa
Jan 1, 1981
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Air-Deck Behavior during Rock BlastingBy Dale S. Preece, Ruilin Yang
Shock wave physics is an important part of air-deck behavior since the bulk explosives in the column impart a shock into the air-deck where the air shock then passes through the air-deck at a rapidly
Jan 1, 2016
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Utilization of Aerial Drones to Optimize Blast and Stockpile FragmentationBy Ran Tamir
"This document introduces the use of drone generated aerial photography to collect and analyze fragmentation data for both muck piles and post crusher stockpiles in order to support the continuousimpr
Jan 1, 2017
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Holistic scientific approach to address wall damage and berm loss from blasting in large open cut metal minesBy Tapan Goswami, Stephen Jeric, Geoff Brent
Highwall failures in large deep open cut mines have very significant safety and commercial implications. There are many factors influencing the stability of highwalls. The major influence is the inter
Jan 1, 2011
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High Liability Blasting Techniques and EquipmentBy Gary B. Hemphill
Each year the demand for precision blasting increases due to the reduction in the amount of prime land. More site preparation and hone building requires blasting than they did a decade ago, Because of
Jan 1, 1978
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Environmental Effects of Blasting and Their ControlBy Mark S. Stagg, David E. Siskind
Five major environmental effects of rock blasting are ground vibrations, airblast, flyrock, dust and fumes. What makes them "environmental" as opposed to occupational health and safety issues is that
Jan 1, 1997
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Development of Scaled Damage Criteria for BlastingBy Jorge Alvarez
In a large-scale open-pit mining operation, continuous efforts are made to control damage to the slope walls. An essential tool in this effort is determining the PPVc (critical peak particle velocity)
Jan 21, 2025
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Shotrock Fragmentation Improve in Complex Lithology ConditionBy M. Syafiq Isnaya, Rahma Norfaeda, Slamet Rachman Jaka
This paper is about project improvement to maximize energy distribution while ensuring beneficial blast results (reduce boulder condition). The main problem is how to manage complex lithology conditio
Feb 1, 2020
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Development of Splitting Technology by Using Electric Discharge Impulse Crushing SystemBy Hideaki Kitajima, Ryo Sakamoto, Katsuya Sasaki, Maehata Hidehiko
The Electric Discharge Impulse Crushing System (EDICS) is a technology for carrying out crushing by using electrical power and nitromethane. It is designed for construction tasks such as splitting of
Jan 1, 2011
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Implementation of a Remote Blasting Engineering Center in PeruBy Jorge Cárdenas, Luis Huaroc, Máximo Cari, Nestor Delgado
In Peru, after four years of pandemic, some mining companies have chosen to install integrated operating centers in central offices where through network technology and video surveillance it allows th
Jan 21, 2025
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Case Study Using 3-D Blast Modeling to Develop Design for Blasting in Close Proximity to Pit PumpBy Stuart Brashear, Steven Bell, Donald Smith
This Limestone site required the removal of a bench containing high quality rock located in close proximity to sump and pit pump. The sump and associated electrical box were below the bench that neede
Jan 21, 2025
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Increasing Cast Blasting Benefit with the Use of High Speed Motion Picture Photography and AnalysisBy John L. Floyd
The use of explosive energy to displace overburden or waste material can provide substantial savings to operations which normally rely on mechanical means for material removal. To optimize the availab
Jan 1, 1988