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Blast Design Analysis for Reduction of Boulders ProductionBy Michael Karmis, Syed Muhammad Tariq, Zeshan Hyder
This paper analyzes the blast design for lime stone quarries of two major cement plants in Pakistan. The production blast of these quarries was resulting in excessive boulders production. At some inst
Jan 1, 2012
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Detonation Pressure Measurement Using the Manganin GaugeBy Richard H. Granhom
Detonation pressure, or Chapman-Jouguet pressure, is an intrinsic property of an explosive, and like detonation velocity, is an indicator of explosive performance. Pressure and velocity are also impor
Jan 1, 1991
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Use of Explosives in Deep Rock Mining: In Situ Energy and Mineral RecoveryBy D Larson, M Finger
Chemical explosives may become a key element in many of the in situ energy and mineral recovery methods under development. This paper discusses the potential role of explosives in deep rock mining for
Jan 1, 1976
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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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Blasting and Excavating on Precarious Rock SlopesThere is an intuitive tendency to equate rock strength with rock stability, yet the two must be evaluated separately. A slope in strong hard rock is not necessarily stable, nor is a slope in weathered
Jan 1, 1996
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"High Fidelity Computer Modeling of Air-Deck Behavior during RockBlasting"By Dale S. Preece, Ruilin Yang
"Air-decks are often employed for presplitting along the final highwall of a blast and are sometimes also included at the bottom or in the middle of explosive columns in the production portion of a bl
Jan 1, 2017
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Proactive Controls for Highwall StabilityBy Trevor Ames
Highwall instability, and sometimes referred to as ground failures, historically are a consistent contributor of mine injuries and fatalities within surface mines. To combat this several efforts, incl
Jan 1, 2015
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Field Investigations into Blast Design Parameters of Highly Jointed Rockmass of Overburden: A Case Study of Large Opencast Coalmine (India)By V R. Sastry, D P. Singh, N R. Thote
Rock parameters which are uncontrollable impose restrictions on the procurement of desirable fragmentation. Blast design parameters which are controllable prove to be important tool in blasting operat
Jan 1, 1995
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Blast Control Using Accurate DetonatorsBy P D. Katsabanis, K Steeves, D Dombrowski
Accurate electronic detonators with firing time accuracy within 100 microseconds of the nominal have been used to control blast results in terms of fragmentation, vibrations and wall control. Axisymme
Jan 1, 1995
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PIBSA-based Emulsifier for Low Quality Ammonium Nitrate Emulsion ExplosivesBy Julia Creasey, Natalie Hodgson, Claire Ward, Craig Davies, Helen Sarginson
"Emulsion explosive producers are attempting to lower the cost of emulsion production by using lowquality ammonium nitrate in emulsion formulations. Low quality ammonium nitrate contains additivessuch
Jan 1, 2017
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High Performance Ionomer Polymers for Non Electric Shock TubesBy K. Hausmann, W. Whelchel
The properties of ethylene Ionomer resins for the inner layer of non-electric shock tubes will be discussed in detail, and opportunities for property enhancement will be pointed out. A stiffness progr
Jan 1, 2010
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Some Issues in the Image Analysis Application for Bench Face Characteristics and Blast Fragmentation MeasurementBy Türker Hüdaverdi, Özge Akyildiz
"Efficiency of blast operations depends on fragmentation, overbreak, muckpile profile anddisplacement, vibration, airblast, flyrock and damage to wall or slope stability. To provide all these conditio
Jan 1, 2017
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Geomechanical differentiation of cratering mechanisms with two degrees of freedom and burden dependency investigated through single hole blast tests.By J. D. Aubertin
Rock blasting is a complex engineering process that requires in-depth knowledge of operations and geomechanical conditions. Acknowledged design precepts are based on cratering behavior associated with
Jan 1, 2024
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Ionomer Resins for Higher Performance Shock Tubes in Open Pit Mining ApplicationsBy K. Hausmann, P. A. Sashin, G. J. Prejean
Misfires caused by unreliable shock tube constructions can have significant cost implications and place field workers at serious risk during remediation. Ionomer materials, used as a subtube in shock
Jan 1, 2011
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Modeling Blast-Induced Damage in Open Pit Mines with Numerical ModelsBy Cristian Castro, Patricio Gomez, Jason Furtney, Augusto Lucarelli
Understanding the effect of blast-induced damage on wall stability is critical to safe and economical operation of a large open pit mine. In this paper, a numerical modeling methodology is used to inv
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Modeling Blast-Induced Damage in Open Pit Mines with Numerical ModelsBy Cristian Castro, Patricio Gomez, Jason Furtney, Augusto Lucarelli
Understanding the effect of blast-induced damage on wall stability is critical to safe and economical operation of a large open pit mine. In this paper, a numerical modeling methodology is used to inv
Feb 1, 2020
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Optimized and Calibrated Migration to HXNBlast at Minera San CristóbalBy Javier Castaneda, Luis Zozaya, Noel Huarachi, María Rocha
The objective of the project was to implement and calibrate drill and blast models supported by Geotechnical and Geological models as well as the mine and operation characteristics. The models would t
Feb 1, 2020
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Data-driven improvement of active rockburst prevention - case study from Polish underground copper minesBy M. Szumny, P. Mertuszka, K. Fuławka
Multi-face destress blasting is the basic method of reducing rock bursts hazard in Polish copper mines. Blasting operations of this type are carried out regularly, twice a day in order to minimize the
Jan 1, 2024
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Status of International Standards on BlastingBy Gerald R. Coonan
I'm really here to talk about my pet subject of government relations. I've been in Peabody's Environmental Quality Department, working on regulations, for over five years, and I have seen a number of
Jan 1, 1980
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Single Round Blasting of 10 Food Diameter x 65 Foot Depth Emplacement Shaft Collars at the Mercury, Nevada Test SiteBy Tom Short, Bill Beam
Some of the weapons testing shafts at Mercury, Nevada require depths of 1000ft and diameters of 10 feet. The top 40 feet to 65 feet is drilled, blasted and excavated by Large caisson type augers in or
Jan 1, 1991