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Rock Slope Remediation on the Pennsylvania Turnpike Bedford, PennsylvaniaBy Ron Woolf, Corry Goumans
This paper describes rock slope remediation performed along America’s first Superhighway, the Pennsylvania Turnpike and in particular, the specialized drilling equipment designed and built by Pacific
Jan 1, 2001
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Evaluating Explosive Type and Water-Casing for Demolition Kicker ChargesBy Rachel L. Bauer, Catherine E. Johnson
Explosive demolition involves first, the use of cutting charges to sever a column and second, kicker charges to move it out of alignment. Dynamite is the traditional explosive used in kicker charges a
Jan 21, 2025
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Implementation of an Integrated Quality Assurance and Control System Applied to High Complexity Blasting Open PitBy Regina Rocha, Miguel Humpire
One of the challenges within unitary mining operations is blasting, which has a significant downstream impact on the following processes, which is why mining companies ensure the results of the blasti
Feb 6, 2023
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Limitations of using PPV Damage Models to Predict Rock Mass DamageBy Jianping Li, Ernesto Villaescusa, Kelly Fleetwood
During blasting, stress waves propagate through a rock mass, inducing stress and strain changes. This applied deformation affects intact rock, existing discontinuities, mine excavations, and engineere
Jan 1, 2009
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Modern Underground Raise and Slot DesignBy N. Rouse
Underground raises and slots are a vital part of underground blasting operations. Raises and slots are vertical shafts or openings used for ventilation, ore passes, or creating voids in stopes. In the
Jan 1, 2024
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Flyrock: A Continuing Blast Safety ThreatBy Harry Verakis
Flyrock is the second leading cause of all blasting related injuries in surface coal, metal and nonmetal mining operations. It is also a primary cause of property damage, monetary losses and “near mis
Jan 1, 2011
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Journal: 100 Years / Postcard mailed from Ironwood, Michigan, 13 April 1909 / A Primer on Explosives for Coal MinersBy Clarence Hall, Charles E. Monroe
Squibs, Fuse, and Detonators It has been made clear in the discussion of combustion and explosion and the description of various explosives that they can be caused to explode by various means. All of
Jan 1, 2010
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Safety of Ammonium NitrateBy Erik Nygaard
Ammonium nitrate (AN) is the main ingredient in most industrial explosives, but it is estimated that as much as 80-90% of the global annual production is used as fertilizer [14, 25]. Over the last yea
Jan 1, 2006
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Study of Sheet Charge Initiation with Varied Cap Type, Orientation, and DistanceBy C. E. Johnson, R. L. Bauer, E. M. Johnson
In industry, the strength of a blasting cap is often equated to the type of explosive it can detonate. Comparable cap strength is becoming less important as nearly all caps manufactured today can init
Feb 6, 2023
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Air Overpressure Monitoring for Underground Production Blasting Operation in LimestoneBy B S. Petri, N T. Rouse
Underground limestone mines generally lack air pressure monitoring procedures and instrumentation guidelines. The blasting industry also lacks an applicable source for air overpressure levels that are
Jan 1, 2014
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Journal: 100 Years / A TREATISE ON COAL MINES J.H.H. Holmes London, 1816 / New Uses for Explosives E.I. Du Pont De Nemours Powder Company Pamphlet No. 1 January 1909By H. Mullani
We have in southeast Kansas a variety of soils underneath which are a variety of subsoils compressed into what is commonly called “ hard pan.” These soils are of six types, ranging from a clay to a sa
Jan 1, 2010
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Vibration Monitoring Using In-house Developed Devices – A Taylor’s ApproachBy Auã Kiahla, Tomi Kouvonen, Vinicius Miranda
Through numerical mathematical processing (Taylor’s approach and numerical derivation) the original data supplied by the accelerometer’s sensors was transformed into velocity and, after the data minin
Feb 1, 2020
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Evaluating the Role of Water Tamping vs Pushing in Explosive ApplicationsBy Jeremiah Cohn, Rachel L. Bauer, Catherine E. Johnson
Water is frequently used in explosive applications to increase explosive performance and reduce air overpressure. Water tamping can enhance cutting abilities of shaped charges in demolition and increa
Jan 26, 2026
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Vibration Control at Long HarbourBy Michael Burrell
This project involved the protection of an historic landfill located on the site. Construction blasting was for a permanent access road to carry traffic to and from a new metal processing plant being
Jan 1, 2012
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The Recovery of a Dozer from a Highwall Using BlastingBy Tyler Acorn, Tristan Worsey
A dozer operator at a surface gold mine accidentally drove a D10 off the side of a highwall. The blade of the dozer caught on the lip of a catch bench 60 ft. (18.3 m), down stopping its descent. The o
Jan 1, 2014
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Institute of Makers of Explosives Safety Analysis for Risk (IMESAFR): A Tolerable Risk Criteria – What Is Safe Enough?By Debra Satkowiak, Ronald Thomas
The Institute of Makers of Explosives (IME), a non-profit safety and security organization founded in 1913, is known for its industry best practices, Safety Library Publications (SLP), some of which h
Jan 1, 2017
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Vibration and BlastingBy Edward J. Walter
Our modern technology is provided with a unique but flexible power tool in the use of explosives. A by-product of explosives usage is vibration or elastic deformation of the earth which is annoying to
Jan 1, 1975
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Pneumatic Stemming of Horizontal Holes with Particulate MaterialBy Clay McNail, Paul N. Worsey, John Schillie
"This paper is the result of undergraduate student research over the period of 2 semesters at UMR, which was focussed on developing a practical way to pneumatically stem horizontal boreholes, mostcomm
Jan 1, 1999
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The Didcot DemolitionBy R. Alford
In the modern world of demolition safety is paramount and unnecessary or unquantifiable risks are not accepted (FasterCapital, 2024) and all risks must be kept As Low As Reasonably Practicable (ALARP)
Jan 21, 2025
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Refinements in Blasting Practices at Minntac MineBy B Kniivila, A B. Andrews, T Lerick, Keith Jansen
Minntac Mine is a large, open pit taconite mine located at the center of the Mesabi Iron Range in northern Minnesota. The planned development of the Mine in the direction of nearby communities prompte
Jan 1, 1984