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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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A Decade of Blasting at Martin Marietta CementBy J T. Keim
Members and guests of the Society of Explosive Engineers, it's indeed a pleasure for a longtime practical user such as myself to have the ears of so many explosive experts for a few minutes just to ex
Jan 1, 1978
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Controlled Blasting at the Hanging Lake TunnelsBy Gordon F. Revey
Hanging Lake Joint Venture recently excavated two conventional 42 foot diameter highway tunnels in the difficult ground conditions of Glenwood Canyon, Colorado. This paper outlines the type and succes
Jan 1, 1991
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Three Laboratory Tests for Explosive RuggednessBy Michael Wieland
Three laboratory tests were developed for rating the wave-impact ruggedness of cap-sensitive explosives that are used for blasting in underground coal mines. Destructible pipe fixtures, called simulat
Jan 1, 1996
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Underground Central Blast System Electric on NonelectricBy J R. "Dick" Daniel
In the fall of 1988, The Cannon mine decided to investigate a central blasting system based on conventional electric blasting detonators being used to initiate rounds primed with Nonel detonators. The
Jan 1, 1989
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Why the 8MS Rule Doesn’t WorkBy D. Bartley, R. McClure, W. Reisz
Ever since the 8ms criterion was developed in the early 60’s there has been an ongoing debate among many blasters as to its actual value in controlling ground vibration. The perpetuation of the myth s
Jan 1, 2006
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A New Generation of Drilling at the Minntac MineBy Don Thompson
The Minntac Mine drills and blasts approximately 75 million long tons of taconite per year. This requires drilling one million feet of 1 6-inch diameter holes. We are in the process of replacing our o
Jan 1, 1998
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Emulsion Performance EvaluationBy R W. Givens
This paper discusses emulsion performance and characteristics. Also presented are pattern design equations by a weight strength method, a "Q" factor method, and a coupled energy powder factor (CEPF) m
Jan 1, 1989
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Relating Horsepower to Drilling Productivity (315b5cd4-5d8d-4d24-b315-826af9c6ec5d)By Brian Wingfield, Rick Givens, Greg Williams
Many technological advancements have been made in explosive products and applications over the last 15 years resulting in productivity and cost gains. However, the applications of total energy (engine
Jan 1, 1996
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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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Rockbreaking Characteristics of Various Mining Explosives in Small Diameter HolesBy J R. Brinkmann
The South African gold mining industry presently uses four different types of explosives in stope blasting. There is general agreement that the type of explosive has considerable effect on Important b
Jan 1, 1989
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The Influence of Time Error of Electric Detonators on the Amplitude of Vibration Generated by BlastingBy Kis M
The purpose of seismic control of blasting is to indicate the vibration magnitude or to eliminate the occurrence of vibration damage caused by blasting. At the Mining Research Institute in Hungary, a
Jan 1, 1979
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Underwater Plug Blast at Manic-C Hydro-Electric ProjectBy P Albert
A wedge-shaped underwater rock plug has to be blasted in order to tap the reservoir and furnish water to a new underground powerhouse at Manicouagan-5. The paper deals with the design and engineering
Jan 1, 1984
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High Speed Photography of Stope Blasting in South African Gold MinesBy P A. Gibson, J R. Brinkmann
The South African gold mining industry fires approximately 800 000 sloping blastholes daily. A programme aimed at characterizing the stope blasting process is underway in order to identify areas for i
Jan 1, 1985
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Snap, Slap & Shoot - A Possible Cause for Premature Ignition of Shock TubeBy Roger Holmberg, Dick Salomonsson
Nitro Nobel (the company was acquired by Dyno Nobel in 1986) originally developed non-electric initiation systems. These system were based on the 1967 invention of the shock tube fuse by Per-Anders Pe
Jan 1, 2002
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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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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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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
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Benefits of Bulk Explosive Use in Underwater Drilling and Blasting OperationsBy B R. Spencer
Using bulk repumpable water gel explosives in underwater shooting results in even more benefits to the user than a "dryland" customer. It is nearly impossible to reshoot underwater, so a bad shot caus
Jan 1, 1990
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Fracture Control BlastingFracture Control Blasting is an alternative to pre- and post-splitting or smooth wall blasting. It was developed at the University of Maryland as an attempt to overcome some of the disadvantages that
Jan 1, 1984