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The Effects of Underground Blasting on Nearby Pre-existing StructuresBy Scott Rosenthal, Logan Connolly
Butte, Montana holds a prestigious place in the history of mining, deemed “The Richest Hill on Earth,” containing a plethora of underground mines. The Orphan Boy/Orphan Girl underground mines, on the
Jan 1, 2018
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Sappington Bridge: An Opportunity for Strengthening Research and Demolition TrainingBy J. Baird
The Sappington Bridge, a steel arch span bridge constructed in 1904 over the Meramec River, was demolished due to its advanced state of deterioration. The demolition was a project to benefit Crawford
Jan 1, 2003
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Mining Industry and US Government Cooperative Research: Lessons Learned and Benefits to the Mining IndustryBy Robert Martin, Brian W. Stump, David P. Anderson, W Scott Philips
Since 1994, various mines in the US have cooperated with research scientists at the Los Alamos and Lawrence Livermore National Laboratories to address issues related to verification of the Comprehensi
Jan 1, 1997
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National Research Council Committee on Marking, Rendering Inert, and Licensing of Explosive MaterialsBy Robert B. Hopler
Explosives, originally used only in fireworks and warfare, became legitimate contributors to human progress when miners in Eastern Europe began using them to break rock in the early 1600%. Since that
Jan 1, 1997
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Cast Blasting in the Light of the Electronic OptionBy Winfried Rosenstock
The development of electronic initiation systems has partially reached or will reach in a short period of time full reliability for general use without limitations. Unfortunately those systems meet wi
Jan 1, 2003
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The New Progress in the BGRIMM Emulsion Explosives TechnologyBy Wang Xuguang, Zhang Xiaozhi, Li Guozhong, Xiong Daiyu
The emulsion explosive is a new kind of water-based industrial explosives that was developed at the end of 1960s. In the 1970s, BGRIMM invented EL-series emulsion explosive that created a new era of w
Jan 1, 2003
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Software Blasting Tools Integrated with Electronic Initiation SystemsBy Thierry Bernard, Jean Marc Laboz
This paper explains why and how integration of EIS (Electronic Initiation System) with dedicated software tools can increase benefits to blasters and at the same time simplify the design of blast sequ
Jan 1, 2000
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Journal: 100 Years / Engineering News New York January 5, 1905 Methods and Cost of Blasting and Handling BouldersBy Daniel Hauer
In considering the cost of rock excavation, but little attention has been given to the economical handling and breaking up of boulders. Very few records seem to have been kept as to the cost of such w
Jan 1, 2006
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Blasting in AntarcticaBy Charlie Brumbaugh
Antarctica with its diverse conditions such as severe cold, high winds, rock and ice structure and limited explosives available posed many obstacles. This paper will give an overall view of the method
Jan 1, 2000
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Particles Size Distribution by Static Loading and Fragmentation Using ExplosiveBy V. A. Akinbinua
This work is intended to examine the relationship between rock fragments produced during compression tests using a soft testing machine, e.g. hydraulic press (the machine used in this work is Amlser r
Jan 1, 2014
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Discovery, Analysis, and Elimination of Instantaneous Misfires in Underground Production BlastsBy Norman Disley, David B. Counter, Lionel Hebert
Misfires in underground and surface production blasts can be costly. Costs can arise from loss of resource, production interruptions, having to redrill or otherwise refire the blast (a hazardous proce
Jan 1, 1996
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Relationship between peak particle acceleration, velocity and displacement of blast vibrationBy Ruilin Yang
The following simple equations are frequently used within the blast vibration community;PPA f PPV v = 2p · , PPV f PPD d = 2p · ,a f PPV PPA 2p = , and v f PPD PPV 2p = where, PPA is the peak particle
Jan 1, 2012
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I-40 Rockslide Causes Mountains of ProblemsBy Corry Goumans, Dwayne Wallace
"On July 1, 1997, a rockslide occurred on the I-40 in Hayward County, North Carolina that completelyblocked all lanes and disrupted traffic flow in the region. Remedial measures were undertakenimmedia
Jan 1, 1999
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Case Study and Hands On with the New DSL2 Electronic Initiation SystemBy Thierry Bernard, J. M. Laboz
2000 HIGH-TECH SEMINAR Blasting Technology, Instrumentation and Explosives Applications
Jan 1, 2000
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Blast Performance Analysis – Wavelet Transforms of Blast SeismogramsBy Doug Anderson
Blast vibration seismograms are generally collected strictly for compliance with regulations. The peak levels (including dominant frequency) are typically all that are looked at. However, these record
Jan 1, 2013
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Spherical Element Bulking Mechanisms for Modeling Blasting Induced Rock Motion (64700483-5a3c-4893-9e17-9d150ed129be)By Dale S. Preece, Lee M. Taylor
Accurate computer prediction of the muck pile produced by a conventional blast requires modeling of the physics that occurs during the rock motion phase of a blast. The ability to predict the motion a
Jan 1, 1990
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Florida Mining Blast Vibration Study Part 1: Do RI8507 Vibration Limits Apply in Florida?By Tristan Worsey, Nathan Rouse
Florida is one of the major limestone producing states in the United States. The state has unique regional geology and groundwater characteristics that require equally unique mining methods to extract
Jan 1, 2019
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Surface Instabilities from Buried ExplosionsBy Daniel P. Lathrop, Leslie C. Taylor, William L. Fourney
Except when the target is on the surface, e.g. a tank track, the most important loading mechanism from a buried charge on a target above it is the impact of soil propelled at the target by the expandi
Jan 1, 2009
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Modeling Vs. Monitoring Blast Movement: The Cost of VariationBy Will Hunt, Darren Thornton
In March of 2013, an undisclosed gold mine (MINE X), located in the Western United States, performed blast movement monitoring of three blasts occurring in one of two active pits. Blast Movement Monit
Jan 1, 2014
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The Role of Particle Size and Shape on the Propagation of Reaction in Explosive and Pyrotechnic FormulationsBy James L. Austing, Allen J. Tulis, Ronald Pape, Ronald G. Draftz
In a certain sense, the explosives industry began in the 13th century with the invention of black powder, which is an intimate mixture of sulfur, carbon black or charcoal, and potassium or sodium nitr
Jan 1, 1995