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Application of Automated and Centralized Rock Fragmentation Analysis
By Matthew Baumann, Bahram Sameti, Tafazoli Zeng Hairong, Edmond Chow
An automated, centralized, image-based rock fragmentation analysis system provides blast engineers with the benefit of minimizing tedious and mundane work, and allows them to focus on their expertise
Jan 1, 2013
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New Underground Drilling, Blasting and Mining Methods at the Manic-5 Additional-Power Hydro-Electric Project
By M Sampara, W Comeau
The introduction of large-diameter holes to underground mining has made possible the development of new mining methods such as the Vertical Crater Retreat (V.C.R.) method. It is not only the safest un
Jan 1, 1981
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Use of Explosives in Deep Rock Mining: In Situ Energy and Mineral Recovery
By D Larson, M Finger
Chemical explosives may become a key element in many of the in situ energy and mineral recovery methods under development. This paper discusses the potential role of explosives in deep rock mining for
Jan 1, 1976
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Proactive Controls for Highwall Stability
By Trevor Ames
Highwall instability, and sometimes referred to as ground failures, historically are a consistent contributor of mine injuries and fatalities within surface mines. To combat this several efforts, incl
Jan 1, 2015
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The Art of Communication and Business in the Explosives Industry
By Joseph Meyers
Explosives techniques and technology are constantly evolving and improving, yet basic communication and business skills are not being used regularly. Many potential blasting projects never occur due t
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Blasting For A Lokotrack System
By Roger L. Keller
Cautious, productive blasting is employed in the adaptation of a mobile crushing system extending into a highway through cut. In Hong Kong's final chapter of infrastructure development in preparation
Jan 1, 1998
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Detonation Velocity of Precompressed Emulsion Explosives
By Fumihiko Sumiya, Yukio Kato, Yoshikazu Hirosaki
Secluential blasting is one of the most popular methods in blasting. tiowever, it is well known that an emulsion explosive can be dead-pressed by dynamic pressure generated by the previous detonation.
Jan 1, 2002
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The Use of Blast Modeling Software for Educational Purposes
By Andrea Brickey, Ethan Marcoux
The South Dakota School of Mines and Technology (SD Mines), located in Rapid City, South Dakota, is one of only a few universities in the United States that offer a Bachelor of Science in Mining Engin
Jan 1, 2019
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Safety in the Industry: Recent Development in the Classification of Eexplosives Precursors – The Modified Vented Pipe Test
By David Kennedy, Noel Hsu, Miguel Araos
The use of bulk explosive for mining applications started in the 50’s. Since then millions of tons of that material have been transported by road. However during that time, there have been several roa
Jan 1, 2006
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Optimize Fragmentation with Shovel-Mounted Image Analysis Systems
By Peter Cameron, Tom BoBo
Comminution, being the energy intensive part of a mining operation receives much scrutiny by cost controllers, CEO’s, investors and others as the mining industry goes “back to basics” to reverse the d
Jan 1, 2019
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The Explosives Industry and Governmental Nexus
By Joshua Hoffman, Rhys Baker, Tim O’Brien
Numerous agencies in the Executive Branch of the United States Federal Government have regulatory jurisdiction over the explosives industry. These agencies develop the rules by which the explosives in
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Impulse Delivered to a Plate from Explosive Detonation
By D. Goodings, W. L. Fourney, Bonenberger, R., Uli Leiste
The problem of the maximum depth at which a mine buried in the surf zone or beach zone is a threat to landing vehicles is being studied by Naval Surface Warfare Center (NSWC), Indian Head Division, Na
Jan 1, 2004
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Protecting a Gas Pipeline from Cast Blast Induced Vibration Damage
By Sterling Ziegler, Kameron Ray
Mining operations at a Wyoming coal mine were progressing to within 300 feet (91 meters) of a high pressure natural gas pipeline. Vibration levels from cast blasting were at a point at which standard
Jan 1, 2018
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Streamlining Processes, Increasing Security, Productivity, and Process Transparency by Using Digital Logistics Solutions within the Supply Chain of Civil Explosives
By Frank Hirthammer
Over the past few years, development and implementation of digital logistics solutions has convinced users of many additional advantages of this technology. Barcode labeling and reading increases the
Jan 1, 2018
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Blast Wave Propagation in Underground Mines
By Richard J. Mainiero, Eric S. Weiss
This project investigates the behavior of blast waves from the detonation of high explosives in an underground mine. A series of explosive tests was conducted in the underground and surface facilities
Jan 1, 1995
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Evaluation of Velocity of Detonation of Permitted Explosives
By R R. Singh, U K. Dey, S K. Roy
"Commercial explosives being a heterogeneous mixture of many chemical compounds in prefixed proportion, their velocity of detonation (VOD) may vary from batch to batch, due to variations in the propor
Jan 1, 2007
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Causes and Recommendations for Controlling Coal Damage When Blasting Overburden
By Conny Postnpaok, Mark E. Hammele
"A major problem that has continued to plague the surface oil industry is blast induced damage to the coal seam. Atlas Powder Company has addressed this situation through several years of field resear
Jan 1, 1989
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Protection from Liability Before, During, and After Blast Detonation
By Ralph E. Burnham, J. Kelly Ratliff
"The words “dynamite,” “TNT,” “explosives,” and “blasting” typically cause the general public, andjurors, apprehension and fear. Although blasting operations conducted by well-trained, skilled, andexp
Jan 1, 2016
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Mine Blasting at the British Columbia Institute of Technology
By Christian Dye
"The following paper focuses on the developing relationship between the members of theInternational Society of Explosive Engineers (ISEE), and the mining students from the BritishColumbia Institute of
Jan 1, 2016
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The Importance of Internships for Explosives Engineering Students
By Paul Worsey, Gillian Worsey
The explosives industry is about to reach a critical turning point in human resources. The average age of employees of the largest US explosives company is over 50 and an estimated 5,000 engineers are
Jan 1, 2014