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Be Prepared, Respond Quickly to Blast ComplaintsBy David R. Ziegler
Blasting complaints are as unpredictable as human nature. Being prepared to speak to the complainant, and having a good idea of what you should say, or what NOT to say, may affect the evolution, and
Jan 1, 1998
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How Primadets Can Improve Vibration Control and Reduce CostsBy J R. Phin
The properties of all available modern blasting initiation techniques are reviewed. Primadets are nonelectric initiators, the nonelectric features of the system eliminates concern of premature initiat
Jan 1, 1975
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Repumpable Emulsion SlurriesBy R DeLon Hunsaker
In the past, quarrying and other small operations have not been able to take advantage of the lower cost, convenience and better performance of bulk slurries. However, with the introduction of repumpa
Jan 1, 1984
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Dead-pressing Phenomenon in Emulsion ExplosivesBy Shulin Nie
The dead-pressing phenomenon in emulsion explosives is wellknown. Research work on this subject has been carried out at the Swedish Detonic Research Foundation for the last few years. Several experime
Jan 1, 1993
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Progressive Cavity Pump Safety ImprovementBy Alfred Osborne
Progressive cavity type pumps are widely used by commercial explosive manufacturers for pumping water gel, emulsion and emulsion / ANFO blend explosives. Tests by explosives companies and investigatio
Jan 1, 2002
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Blasting with ANFO/Poylstyrene MixturesBy Karl Kure, Anders M. Heltzen
Mixtures of prilled ANFO and 0,5 - 3 mm polystyrene balls are interesting substitutes to the tube charges or other types of reduced explosives or detonation fuses. Experiments have shown detonation ab
Jan 1, 1980
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Blasting Practices at the Fording River OperationsBy Murray B. Lytle
The Fording River Operations of Fording Coal Ltd. in southeastern British Columbia is producing 45 million long tons of clean metallurgical coal for shipment to the Japanese steel industry on a 15 yea
Jan 1, 1978
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An Application of the Hercudet Non-Electric Delay Initiation System to Underground Pillar BlastingBy W Russell
The Hercudet Non-Electric Delay Blasting Cap System provides a means of achieving greater flexibility in the use of delays, using totally enclosed gas detonation circuits which eliminate the concussiv
Jan 1, 1985
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Safety Talk - Misfires: Don't Overlook the Safety if FlaggersBy Larry Schneider
In the construction field and to a lesser degree in mining, flagman are often necessary to move traffic and or pedestrians through work zones. Everyone readily recognizes that they are essential for t
Jan 1, 2004
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Blasting Procedures at the Republic MineBy R C. Berglund
Since the Republic Mine began production in the mid 1950's, drilling and blasting practices have continually changed. In recent years, progress has been achieved through the development of more precis
Jan 1, 1980
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Fragmenting Oversize BouldersBy J Mensah, G C. Sen
Often large boulders of rock have to be fragmented in civil or mining engineering operations. These oversize boulders are encountered after primary blasts in both surface and underground excavations o
Jan 1, 1989
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The Application of Likelihood Ratio Test to Blast Vibration AnalysisBy W. J. Birch
The dedicated documenting of blast design and vibration monitoring results forms part of the best practice methodology for today’s blasting operators. This allows regression curves to be constantly up
Jan 1, 2004
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The Calculated Risk of Experiencing a Lightning Caused Unplanned DetonationBy Lon D. Santis
This paper presents data and theorem to calculate the risk of experiencing undesirable lightning related events while blasting or while engaged in other lightning sensitive activities. The paper provi
Jan 1, 1998
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The Use of Slow Motion Video to Analyze Surface BlastsBy David W. Zeeb
The use of an ordinary VHS video camera and a four-head player can be an effective tool to analyze surface blasting. The necessary equipment can be purchased for under $1,300 and will allow frame by f
Jan 1, 1992
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Hydro Blasting of BouldersBy Callie Covert
This paper describes the application and results of a more efficient method of breaking boulders using dynamite and water. This method is being used for the disposal of boulders that result from pinna
Jan 1, 2001
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Computer Design and Field Application of Sub-Seam and Multi-Seam Blasts in Steeply Dipping Coal SeamsCoal strip mine operators in Western Canada often mine steeply-dipping multiple coal seams in mountainous terrain. The ability to fragment the rock waste layers above and below these seams with minimu
Jan 1, 1985
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Blasting the Fulton Bottom River CrossingBy E Emery Jr Gray
The City of Richmond, in an effort to improve sewage treatment facilities, designed an invert syphon to cross the James River at Fulton Bottom. The design criteria called for installation of two 36-in
Jan 1, 1979
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Electrical Current Requirements in Tunnel BlastingBy Deane Boddorff
A 440 Volt AC power line is a typical power source for energizing electric blasting cap circuits in driving hard rock tunnels. A common misconception exists that the caps actually see 440 Volts. This
Jan 1, 1975
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The Use of Air-decks in Production BlastingBy S B. Richardson, R E. Danell, D Mead, N T. Moxon
Explosives provide a very concentrated source of energy which is often well in excess of that required to adequately fragment the surrounding material. Blast design, environmental requirements, produc
Jan 1, 1993
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Residential Structural Response to Airblast From Munitions Disposal at the McAlester Army Ammunitions PlantBy Calvin L. Cumerlato, David E. Siskind
The Bureau of Mines has monitored structural responses to airblast overpressure produced by munitions disposal at the McAlester Army Ammunition Plant. The Purpose of this study was to determine if the
Jan 1, 1994