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The Hercudet System of InitiationBy Robert B. Hopler
Hercules Incorporated has designed, developed, and begun introducing a new non-electric delay blasting cap system which is radically different from anything presently available. This system, called He
Jan 1, 1975
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Complete Computer Simulation of Crater Blasting Including Fragmentation and Rock Motion (2000 International Society of Explosives Engineers)By Dale S. Preece, Lee M. Taylor
Computer simulation of the physics involved in conventional rock blasting can be split into two phases; transient stress wave propagation and rock motion. Because the two phases involve totally differ
Jan 1, 1989
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Predicting Explosive Impulse by Means of Small Scale TestsBy D. Goodings, W. L. Fourney, Bonenberger, R., Uli Leiste
The Dynamics Effects Laboratory at the University of Maryland conducted a series of very small scale tests to measure the impulse delivered to a plate by the detonation of an explosive charge which wa
Jan 1, 2005
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The Effects of Rock Mass Characteristics on Fragmentation in Controlled Blasting Experiments in Small Development HeadingsBy Chantale Doucet, Yves Lizotte, Alan Cameron
A joint Federal Government-Industry research project on the effect of geology on the fragmentation of rock excavated by blasting in underground developments was conducted at the CANMET Experimental Mi
Jan 1, 1996
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Explosives Industry in India: A Changing ScenarioBy S S. Kahlon
India is a large and growth market for explosives and accessories, which has dramatically changed from complete import dependence to self sufficiency, and now has an exportable surplus. The largest si
Jan 1, 1987
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Seismic Study of the Dynamic Response of Rock to Cylindrical Charges Fired in a Half and a Quarter Space GeometryBy Sharon K. Reamer, Klaus G. Hinzen
A series of controlled seismic experiments was performed in a limestone quarry in southern Germany to study seismic effects of cylindrical charges fired in both a half space (HS) (burden 63 m) and qua
Jan 1, 1991
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Avoiding Tragedy: Lessons to be Learned from a Flyrock FatalityBy Courtney W. Shea, Dennis Clark
Reckless blasting can have tragic consequences: The death of an innocent traveler, the financial demise of a coal company, and even criminal prosecution. In June 1993, a Tennessee coal mining company
Jan 1, 1998
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On Explosives Useful Work and Rock Mass Fragmentation EnergyBy Lina Lopez, Jose Sanchidrian, Jean Du Mouza, Essaieb Hamdi
This paper evaluates the actual energy delivered by the explosives used in the fragmentation of rock during blasting vs. the available theoretical explosive energy. The evaluation of the fragmentation
Jan 1, 2002
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Detonator Malfunctions-Emulsion Sensitizer EffectsBy Christopher Smith
The critical nature of detonator function in blast design and its effects upon performance and safety of a blasting operation are well documented. Numerous laboratory and field studies have shown dyna
Jan 1, 2006
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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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Detonation Velocity of Precompressed Emulsion ExplosivesBy 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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Attracting and Engaging the New Generations: An ISEE Student Chapter Case StudyBy Bethany Witter, Dyno Nobel
In the past decades, a technological explosion has caused generational shifts. First, millennials experienced a technological shift to computers and cellphones. Next, Generation Z experienced a shift
Feb 1, 2020
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Underwater Blasting Effects' Models: a Critical Evaluation of IBLASTBy Thomas M. Keevin, Gregory L. Hempen
A user-friendly model for environmental effects from underwater explosions is presently available. The model by Munday et al. (1986) is effective for determining fish mortality radii from underwater s
Jan 1, 1995
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Regulating the Velocity of Detonation of ANFO Utilizing Blends of Non-Explosive MaterialsBy Michael E. Curtis
This paper outlines a study performed to analyze the advantages of utilizing a blasting agent with a velocity of detonation that is 1.3 to 1.4 times the P-wave velocity of sedimentary shales and sands
Jan 1, 1997
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Numerical Simulation for Linear Charge Coyote Blasting with Presplitting BoreholesBy Huang Fenglei, Jin Qiankun
A new linear charge method has been applied in coyote blasting for highway excavation in which presplitting boreholes are set along the designed rock slope with some empty chambers at the end of linea
Jan 1, 1998
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Mass Blasting at the Homestake MineBy Rodger Andrews
High cost - low productivity mining methods at the Homestake Mine forced the need for a new and safer means of ore extraction. Vertical Crater Retreat (VCR) was introduced in 1978 and accounts for ove
Jan 1, 1988
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Explosives Selection to Minimize the Risk of Dust Explosions in Underground MinesBy Q Liu, P D. Katsabanis
Dust explosions in underground sulphide and oil shale mines result from the detonation of explosives in the blasting operations. Explosive composition, oxygen balance, priming and ideality of detonati
Jan 1, 1991
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Pump Safety Tests Regarding Emulsion ExplosivesBy Hans Perlid
In the handling of emulsion explosives pumping is a key operation. A number of serious accidents has shown that pumping can be a risky operation and should be care&lIy considered and investigated. Thi
Jan 1, 1996
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Effective Construction Blasting Damage ControlBy Earl C. Hutchison, Gene Smith
Extensive blasting was required to construct an underground tunnel for a 90 inch sewerage relief line. The tunnel and required excavation extended under an upper middle-class residential area in Atlan
Jan 1, 1981
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Attracting and Engaging the New Generations: An ISEE Student Chapter Case StudyBy Bethany Witter
In the past decades, a technological explosion has caused generational shifts. First, millennials experienced a technological shift to computers and cellphones. Next, Generation Z experienced a shift