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Blasting Claims 101: An Introduction to the Defense of ClaimsBy Joshua A. Bennett
"Lawsuits where owners allege their property has been damaged by nearby blasting routinely costblasting companies, explosives engineers, and others in the field both time and money. When ownersfeel th
Jan 1, 2016
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A Protocol to Reduce the Risk of Dealing with MisfiresBy Rob Farnfield, William Birch, Douglas A. Anderson
In the blasting industry, even to the most safety conscious shotfirer, misfires are a constant source of concern. In the United Kingdom, there are two types of misfire, as classified by the Health & S
Jan 1, 2016
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A Common Sense Approach to Cutting Drill and Blasting CostsBy Phil N. Bradbury
"During a routine belt tightening of all cost centers, the management at the Martin County Coal Surface Mines, located in Martin County Kentucky felt that a thorough investigation of the drilling and
Jan 1, 1986
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Precision-Scale High-Explosive Water Shock ExperimentsBy Charles E. Joachim, Christo V. Lunderman, Charles R. Wdch
The U.S. Army Engineer Waterways Experiment Station (WES) recently conducted a series of precision-scale water shock experiments which consisted of the detonation of several 8-gram, 10-gram, and 12-gr
Jan 1, 1998
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Determination of Blast Vibration Limits by Direct Strain MeasurementBy Adrian Moore, Alan Richards, Andrew Brodbeck
Structural blast vibration limits should be based on the strength of the structure, the stress induced by blasting, and a responsible factor of safety. In this paper a methodology that uses direct str
Feb 1, 2020
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Drilling Efficiency and the Associated Benefits to the Mining ProcessBy Lee B. Paterson
Mining Engineers throughout the world have an appreciation for the importance of the role of the Blasthole Drill in one of the primary elements of the mining process. This paper highlights areas that
Jan 1, 2000
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Relating Horsepower to Drilling Productivity (83232d04-da2e-4755-9f53-c779d17429d0)By Brian Wingfield, Greg Williams, Richard W. Givens
Application of required energies into the rig design can have a dramatic impact upon productivity. Computer modeling of these production variables has led to changes in design with values closely appr
Jan 1, 1995
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Working With Explosives Suppliers to Optimize Pit Productivity and CostsBy Thomas J. Snyder
Modern quarry management should be alert to every opportunity to improve productivity and reduce operating costs. In this paper, the author outlines areas in which explosives suppliers should be encou
Jan 1, 1988
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Journal: Musings of a Safety Philosopher Relating to Blasting SafetyBy Ralph Dawson
The following additions to SLP-4 “ALWAYS AND NEVERS” have been approved by the Board of Governors since the last printing 6/97 and will be included in the next printing soon. They are also included in
Jan 1, 2001
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Prediction of Dynamic Response of Ground due to Blast LoadingBy Chang-Ha Ryu, Hyung Yang, Hyung-Sik Yang
Ground vibration by rock blasting causes many environmental problems to adjacent structures and human bodies. Growing concerns have been given to the effects of dynamic loading induced by blasting wor
Jan 1, 2001
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Fragmentation and Throw due to Blasting – Role of Initiation SystemsBy K. Ram Chandar, Vedala Rama Sastry
Fragmentation and muck pile profile together play an important role in optimizing the excavation costs for given geo-mining conditions. Initiation system is one of the vital parameters influencing the
Jan 1, 2008
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Dynamic Mud Flow Effects on Emulsion Explosives in IndonesiaBy Garfiansyah Rayes
In 2023, an Indonesian coal mine experienced significant contamination of an emulsion blend explosive by dynamic mud and water flow, triggered by flooding due to exceptionally high rainfall. This intr
Jan 21, 2025
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Blasting Study: How Small to Medium Diameter Charges Effect StructuresBy Frank Lucca
This study is based on a six month study performed for Lee County, Florida. The study was based on blasting for land development and how this type of blasting affects structures. The study is investig
Jan 1, 2006
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Guidelines for Mining and Quarry Blasting Urban Areas Brazilian Regulation NBR 9653 Under Current ReviewedBy Denise de La Corte Bacci
The Brazilian Regulation NBR 9653 is a guide intended to evaluate mine and quarry blasting effects in urban areas. The first version, written in 1986 by the Committee of the Brazilian Associate of Tec
Jan 1, 2005
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Experimental Techniques To Reduce Blast Vibration Level, Tourah, Cairo, Egypt.By Abdel Rahman, M. Khaled, Abo Makarem
There are four large limestone quarries, located nearby Cairo metropolitan. Drilling and blasting operations are used to extract limestone for the cement industries. In these quarries, the blast vibra
Jan 1, 2007
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Applying Remote Sensing and Geographic Information Systems to Blast DesignsBy Laurence Neufville
Proper risk assessment and blast design are very desirable to the execution of a blast. Not only will this ensure that it achieves its desired outcome, but the probability of complaints and litigation
Jan 1, 2009
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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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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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Dilution and Ore-Loss Optimization in Underground MinesBy Sami Kara, Marsel Nabium
This paper provides an overview of the solution applied in underground Silver mine in Russia. The paper reviews the dilution problem throughout the entire mining process, and provides a rational appro
Feb 1, 2020
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Demolition Blast of Heavily Reinforced Concrete Slab on Impermeable LayerBy Ye Yuan, Jaak Daemen, Shaguo Yuan
ABSTRACT: A 400m2 (480 yd2) heavily reinforced high-strength concrete slab 800mm (31 inch) thick had to be demolished. Underneath it was a 300mm (12 inch) thick underlying structure consisting of thre
Jan 1, 2010