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Changing Borehole Length to Improve Breakage: a Case HistoryBy Norman S. Smith, Richard L. Ash
Many factors affect rock fragmentation from blasting. One variable seldom considered when designing blasts, however, is the borehole length. An example is described of how the length was adjusted to g
Jan 1, 1976
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NOx Emissions from Blasting Activities in a Surface Mining OperationBy Joshua Hoffman, Catherine Johnson, Braden Lusk
Blasting conducted in surface coal mining operations in the Appalachian region consumes a significant amount of blasting agents. Emission of oxides of nitrogen (NOx) from these operations potentially
Jan 1, 2014
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Blasting a Narrow Orebody at Bong Mines, LiberiaBy Dieter Froelich, Giles Turcotte
In the near future, Bong Mining Company (BMC) will start mining a new deposit known as Zaweah II which is a narrow iron orebody requiring multiple row blasts with the bench floor as a free face. This
Jan 1, 1980
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Heat-Resistant Water Gel ExplosivesBy Y Omura
If dynamite is used in hot metal mines, it may be subject to decomposition, and the increase in nitroglycol vapour under the high temperatures causes bad headaches of workers. Also the explosives cont
Jan 1, 1983
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An Introduction to Drilling VibrationBy George P. Schivley
When drilling blast holes, with roller cone bits, a phenomenon known as drilling vibration can occur. It is characterized by either axial or lateral modes of periodic motion of the drill pipe; superim
Jan 1, 1997
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Wave Transmission Response of Large Structure to High Frequency Blasting VibrationBy C. T. Aimone-Martin, B. M. Meins
This paper compares response of large urban structures to small charge weight, ultra-high frequency rock blast excitation from contiguous excavation to that of houses to more distant, larger charge we
Jan 1, 2018
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Pitfalls in Determining Thermal Hazards with Differential Scanning CalorimetryBy Kirk Yeager
All explosive formulations display some sensitivity to heat. A common technique utilized to measure an explosive’s response to thermal stimulation is differential scanning calorimetry (DSC). As DSC an
Jan 1, 2000
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Multi-Blasthole, Multi-Row, Detonation Delay timing Simulation of Rock Blasting Using DMCBLAST_3DBy Dale Preece, Stephen Chung
Development of DMCBLAST-3D is continuing and now includes the capability to simulate the detonation of multiple blastholes in multiple rows that make up a conventional bench blast, either in a rock qu
Jan 1, 2002
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Parameters Affecting Explosive Energy Release - A Case for Realistic Rating of Commercial ExplosivesBy B Mohanty
The current basis for rating of commercial explosives is examined, with particular emphasis on calculated bulk and weight strengths, detonation velocity and underwater energy measurement. The calculat
Jan 1, 1988
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Blasting Accidents in Mines, a 16-Year SummaryBy John W. Kopp, David E. Siskind
Over 4 billion pounds of commercial explosives are used by the U.S. mining industry every year with an excellent and improving safety record. However, accidents involving explosives are seldom minor.
Jan 1, 1995
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A New Type of Nonelectric DetonatorsBy Hans Florin
This paper describes the modification of a nonelectric detonator which is ignited by a signal tubing. The heart of the new detonator lies in a so-called ignition transmitting element. The construction
Jan 1, 1988
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Blasting Accidents in Underground Mines a Two Decade SummaryBy Harry Verakis, Thomas Lobb
This paper is a summary and an update of the underground mine blasting accident investigations and studies previously conducted by the Mine Safety and Health Administration (MSHA) and the former US. B
Jan 1, 2002
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Close Proximity Trench Blasting Case HistoryBy Andrew F. McKown, Robert A. McClure
This paper will describe a trench blasting case history in close proximity to several adjacent structures, including a bridge abutment, railroad tracks, and utility pipes. Some design considerations i
Jan 1, 1988
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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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Shock Physics Theory of Air-Deck Behavior during Rock BlastingBy Dale S. Preece, Ruilin Yang
"Air-decking has been used frequently in blasting for many decades. It has been asserted that an air-deckcan alleviate excessive shock pressure from the detonation of a charge thereby producing better
Jan 1, 2017
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Electronic Detonator Failed by Electromagnetic Waves Emitted on Detonation of Nearby Explosive ChargesBy Tuan Nguyen, Dirk Hummel, Ruilin Yang
In a tunnelling site in Japan, it was found that detonators failed to initiate with their shells and primary explosive intact. Their capacitors, however, were discharged due to some damage on the appl
Feb 6, 2023
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Influence of Blasting on Sinkhole Development Near Limestone QuarriesBy Gordon M. Matheson, David K. Miller
Sinkhole development in karst terrains is a serious problem and risk to facilities built in these areas. The potential for sinkholes are a function of many things including the chemistry of the underl
Jan 1, 1998
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Detonator Safety Relation to Measurement ErrorsBy James G. Stuart, Tassilo N. Baur
We will discuss the kind of procedure that we use to predict the no-fire (for safety) and all-fire (for reliability) current levels for any given type electric detonator. The basic idea is to expose s
Jan 1, 2019
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Design Criteria for In-Situ Mining of Hard Rock Ore DepositsBy M E. Hanson, K Chong, R H. Jacobson, S C. Way
To create conditions for economic rates of mineral recovery in a deep, hard rock mass, enhancement of naturally occurring permeability is necessary, and may be achieved through explosives detonated in
Jan 1, 1983
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Presplit Assessment by Signature Hole Blast Vibration with Accelerometer MeasurementBy Remi Proulx, Ruilin Yang
The effectiveness of presplit in soft or fractured ground is hard to visualize or quantify. There have been many attempts by the blasting community to measure and quantify the effectiveness of prespli
Jan 1, 2019