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Technology for Risk Management and Decision Making in Civil ExplosivesBy Davey Bickford, Johan Hawinkel
Blasting and the use of civil explosives are a critical step in the mining process. Good decisions provide significant downstream benefits and create a safe and sustainable working environment, while
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Improving Drilling and Blasting By Using TQM and Appropriate ITBy John Hutchings
Drilling and blasting is a clearly delineated work process, which has well defined inputs and outputs. Drilling and blasting is also a process with a number of steps each of which has measurable outco
Jan 1, 2004
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Effects of Surface Mine Blasting on Underground Mine OpeningsBy Michael K. Phang, Thomas A. Simpson
Field studies at an underground mine site were conducted to evaluate and monitor blast-induced vibrations on an underground coal mine roof. The vibration data were evaluated so that a suitable damage
Jan 1, 1984
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The Safe Elimination of Buried Explosives Near Gillette, WyomingBy William H. Snyer, Victor A. Sterner
A cache of buried explosives was discovered by ICI Explosives, USA Inc. at one of their sites near Gillette, Wyoming. An intensive investigation conducted by ICI management indicated that nitroglyceri
Jan 1, 1997
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Explosives Training Modules and Econex ApproachBy Fred C. Drury
The Explosives Engineer's concern for personnel training in the safe, efficient and effective use of explosives materials has grown in recent years. Available training options have also grown. Today's
Jan 1, 1981
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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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Predicting Low-Amplitude Long-Distance Ground Vibrations Induced by BlastingBy Navid Mojtabai, Jaak J. K Daemen
Some facilities require ground vibration limits that are far below typical vibration levels of interest in most blasting situations. A possibly extreme example of such a facility might be the proposed
Jan 1, 1987
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Development of Water-Resistant Granular ExplosivesBy Atsuo Inoue, Toshihiro Ogata, Hideaki Sugihara
Generally in Japan, since ANFO has easy handling and low-price, it is most used as industrial explosives. However, ANFO is very easy to dissolve in water, it is difficult to use under existence of wat
Jan 1, 2005
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Attenuation of Ground Vibration Induced by Blasting at Can Open - Pit Lignite Mine in TurkeyBy Gungor Tuncer, Ali Kahriman, Abdulkadir Karadogan, Savas Gorgun
The principal disturbances created by blasting in open pit mines are vibrations, air blast and fly rock. All of them, under some circumstances, caused damage to structures nearby and apart from this c
Jan 1, 2001
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Expandable Packaged ANFO in the FieldBy Donald E. Rossow
In the mining industry ANFO continues to be the primary source of explosive energy. The three most commonly used loading methods are bulk, pour in 50 lb. multiwall bags and cylindrical shaped wet hole
Jan 1, 1985
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A Reanalysis of Fragmentation Data from the Red Dog Mine - Part 2By Norman Paley, Finn Ouchterlony
Detailed fragmentation data for different blast delay timing tests at the Red Dog mine in Alaska are analyzed. This work is a continuation of previous work in which the crusher output was found to be
Jan 1, 2013
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Examination of Timing Requirements for Optimization of Fragmentation Using Small Scale Grout SamplesBy O Omidi
Selection of delay times to optimize fragmentation has been a controversial topic among researchers and blasting practitioners. This paper reviews previous experimental information and presents the re
Jan 1, 2014
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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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Evaluation Of Artificial Neural Networks As A Reliable Tool In Blast DesignBy A. S. Tawadrous
This paper is an evaluation of Artificial Neural Networks (ANN) as a tool in the design of the geometry of surface blast patterns. The built model uses eight different parameters, which affect the des
Jan 1, 2006
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Worsey-Silva Equation for Modeling Fragmentation Caused by Row TimingBy J. Silva, T. Worsey
The Worsey-Silva equation determines the optimal row timing for the smallest fragmentation and allows fragmentation models to be adjusted due to row timing. The equation utilizes the concept of dynami
Jan 1, 2024
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Journal: Recent Projects / Dekalb County, Georgia CBI Assists County with Mock Disaster TrainingControlled Blasting, Inc. (CBI) located in Norcross, Georgia recently teamed with the Dekalb county fire marshals office to stage a mock disaster to test new trainees of Community Emergency Response T
Jan 1, 2010
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Initiation System Accuracy Helps Amax Coal Company's Ayrshire Mine in Southern IndianaBy Roger L. Keller, John Dean Smith
The Amax Coal Company's Ayrshire Mine in Southern Indiana is faced with one of the toughest blasting applications concerning vibration in the nation. As a means of maintaining regulatory compliance th
Jan 1, 1987
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Practical Application of Used Oils in the Manufacture of Bulk ExplosivesBy Michael S. Stern, Gordon P. McDonald
The increasing costs and problems associated with transporting and safely disposing of used engine oils from remote mine sites have caused mining companies to consider other ways to consume their used
Jan 1, 1993
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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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Crusher-Compatible Fragmentation: A DMAIC-Based Approach to Blast OptimizationBy Evan Smart, Andrew Palangio, David Klingspor, Blessing Taiwo
This study presents a DMAIC-based approach to optimize blasting performance and achieve crusher-compatible fragmentation at the Walker-Severn Quarry in Ontario, Canada. By applying the Six Sigma DMAIC
Jan 26, 2026