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An Engineering Model for Predicting Rubble Motion During BlastingBy J T. Schamaun
Recent applications of explosives and blasting agents to rubble rock have led to requirements for more elaborate design and analysis methods. In most blasting uses, it is necessary not only to fractur
Jan 1, 1983
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Assessment and Application of a Single-Charge Blast Test at the Kiruna Mine, SwedenBy U Nyberg
Peak particle velocity (PPV) and distance measurements from a single-charge blast test conducted by Swedish researchers in iron ore at the Kiruna Mine in northern Sweden are presented. They are used a
Jan 1, 2011
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Special Focus on EducationJan 1, 2002
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Open-Pit Blast Vibration PredictionBy Jaak J. K Daemen, Carol Geertson
A portion of a tailings impoundment may need to be removed with the expansion of an open-pit mine in northeastern Nevada. The tailings are saturated and consist of fine silty soil. During the removal
Jan 1, 1998
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Modeling Coal Seam Damage in Cast BlastingBy Dale S. Preece, Stephen H. Chung
"A discrete element computer program named DMC_BLAST (Distinct Motion Code) has been underdevelopment since 1987 for modeling rock blasting (Preece & Taylor, 1989). This program employsexplicit time i
Jan 1, 1999
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Using Dry ANFO in the Pacific Northwest Rainforest: Washington StateBy William C. Lane
The Pacific Northwest has an abundance of seamy, coarse granite and basalt rock. It is used primarily for road construction. Small quarries are opened nearest the road work to cut the cost of hauling.
Jan 1, 1986
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The Chemical Kiloton Experiment the Utilization of 50/50 Heavy ANFO at the Nevada Test SiteBy Don Larson, Gordon Coleman
The United States Department of Energy, through its contractor Lawrence Livermore National Laboratory, has entered into a contract with Alpha-IRECO, Inc. for the emplacement of approximately 2.9 milli
Jan 1, 1994
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Rockbreaking Characteristics of Various Mining Explosives in Small Diameter HolesBy J R. Brinkmann
The South African gold mining industry presently uses four different types of explosives in stope blasting. There is general agreement that the type of explosive has considerable effect on Important b
Jan 1, 1989
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Snap, Slap & Shoot - A Possible Cause for Premature Ignition of Shock TubeBy Roger Holmberg, Dick Salomonsson
Nitro Nobel (the company was acquired by Dyno Nobel in 1986) originally developed non-electric initiation systems. These system were based on the 1967 invention of the shock tube fuse by Per-Anders Pe
Jan 1, 2002
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High Power Energy CastingBy R W. Givens
This paper presents blast casting design variables that have been developed and are currently being used at the High Power Energy mine in West Virginia. The shot specifications are summarized in Table
Jan 1, 1988
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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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Hard-Particle Size Distributions for Soild Explosive IngredientsBy Michael Wieland
Delay blasting in underground coal generates shock waves and rifting forces that damage charges remaining in the blast pattern. Damaged charges detonate poorly, raise fume toxicity and reduce coal bre
Jan 1, 1992
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Mass Blast of Pillars Using New Blasting TechniqueBy Ingvar Hansson, Bjorn A. Jonsson, Bernt Larsson
In the Kiruna Research Mine, Sweden, four large open stopes have been mined, leaving intermediate piIlars and crown pillars. At the final stage of mining mass blasting of the crown pillars above two o
Jan 1, 1986
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Vibration Control During the Construction of an In-Pit Lime Kiln (8311e31c-6f16-4a2a-8cda-6570ebbd2b33)By Paul Worsey, Ron Ecklecamp, Scott G. Giltner, Ronnie Inman, Terry Drechsler
A blast monitoring program conducted at Chemical Lime Companys new lime calcining facility near Ste. Genevieve, Missouri is discussed. The purpose was to develop blasting criteria for the construction
Jan 1, 1996
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Fire Protection Provided by Detonator ContainersBy Lon D. Santis
The Code of Federal Regulations Title 30, Parts 56, 57, 75, and 77 require that detonators and explosives be separated by four inches of hardwood or equivalents when transported together in mines. Thi
Jan 1, 1997
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A New Digital Centralized Blasting SystemBy Peter Reinders, Dirk Hummel
This paper describes a new digital Centralized Blasting System (CBS), which is currently being introduced into underground applications. The CBS makes use of the field-proven detonator and equipment t
Jan 1, 2004
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The Electronic Option, Future Aspects in BlastingBy Winfried Rosenstock, Carlos Orlandi
Along the Pacific West coast of Latin America there are several large operations of metal mining activities. To mention only a few: Chuquicamata in Northern Chile moving daily approximately one millio
Jan 1, 2000
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Instrumental Detection of a Climatologically-Induced Cosmetic Crack in Wall CoveringBy Pierre-Alexandre Abeel, Charles Dowding, Justin Lueker
When blasting is eliminated as a cause of cosmetic cracking, often someone will ask, “If blasting didn’t cause the crack, then what did?” This paper describes detection by remotely operated instrument
Jan 1, 2015
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Controlled Blasting During the Empress Riverboat Expansion ProjectBy Barbara A. Sciever, John H. Sr Schue
Riverboat gambling has caused quite a sensation among people since its talk of coming to Illinois. The year 1992 marked the start of an era for people that had a penchant for gambling, it was the year
Jan 1, 1995
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Large Diameter Presplitting Improved Through Two Novel TechniquesBy GF Brent, Armstrong L. W
It is recognised that presplitting is a special case in blasting which requires the reduction of conventional explosive pressures in order to avoid excessive rock damage. Two routes to achieving this
Jan 1, 1998