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Reducing Eyebrow Break Caused by Rock Blasting in Malmberget Mine (86e4ad65-d689-43b3-b42e-a83837151808)By Z X. Zhang
In sublevel caving mines, eyebrow break usually gives rise to lower ore recovery and worse safety in the field. Eyebrow break is caused mainly by two tensile stress waves: one from the front surface o
Jan 1, 2011
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Strategy, Innovation and Change - Challenging the Future at the Gregg River MineBy Rick W. Bellenie, Ronald L. Woolf
The Gregg River mine is located 40 kilometres (25 miles) south of Hinton, Alberta, approximately 330 kilometres (205 miles) west of Edmonton and lies against the Front Range of the Rocky Mountains.
Jan 1, 1994
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Deltadet System from Delta CapBy Kevin Dunfield
The Deltadet System is composed of: The Deltadet II electronic Detonator. A Field Terminal to create, modify or simply execute an existing blasting sequence. The radio remote controlled option is comp
Jan 1, 2004
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Blast Vibration Monitoring Instrumentation at Noranda MineralsBy David Sprott
The effect that underground blasting has on the stability of hangingwalls, pillars and other rock structures is an inherent part of Noranda's geomechanics and mine design program to improve mine safet
Jan 1, 1988
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Influence of Blast Delay Time on Rock Fragmentation in a 22-FT BenchBy Mark S. Stagg, Stephen A. Rholl
The Bureau of Mines is studying blast delay timing influences on rock fragmentation in a series of tests that started in 3-ft concrete blocks, progressed to 45in-bench reduced-scale tests in massive d
Jan 1, 1988
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Merging an Open Pit with an Underground MineBy Charles L. Greening
MARTIN MARIETTA CEMENT at Martinsburg, West Virginia, has been and presently is engaged in coupling present open pit with old underground workings. Various drilling and blasting techniques have been i
Jan 1, 1982
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Flyrock Revisited: An Ever-present Danger in Mine BlastingBy Harry Verakis, Thomas Lobb
A great deal of information has been presented and published on the danger from flyrock created from blasting operations. The creation of flyrock is not specific to any one blasting operation. Flyrock
Jan 1, 2007
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Isee Photography In Blasting SessionBy T. Palangio
Most blasters wouldn’t think of initiating a shot without a seismograph to record vibration and air blast results. Some might even measure the velocity of detonation but few surprisingly record the ev
Jan 1, 2008
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Investigation of Firing Patterns on Sandstone Benches of a Surface Coal Mine - A Case StudyBy Piyush Rai
Proper use of fi ring pattern vis-à-vis the blast requirements can provide optimal blast performance in terms of fragmentation. Further to this, each fi ring pattern has its own characteristic, for in
Jan 1, 2008
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Experimental Investigation of the Fumes Produced by Modern Commercial ExplosivesBy P D. Katsabanis, W Roberts
Commercial explosives exhibit non ideal behaviour which is very difficult to model. The fume spectrum produced by commercial explosives apart from its practical significance for underground mining is
Jan 1, 1992
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Pole Hole Blasting in Central Washington StateBy Bill Paysse, Lyle Ruffle
My intention is to produce a video, pictorial, and oral presentation on utility blasting, primarily power pole holes and ditches. Included will be blasting for a take-off structure inside of Wanapum s
Jan 1, 2007
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New Variables for Rock Fragmentation ManagementBy Rafael Tadeu Pinto e Moura, Giorgio De Tomi, Jacopo Seccatore
This paper describes a research and development project in an open-cast mine with the goal to achieve an average P80 of 300 mm (11,8”) in the run-of-mine (ROM) product without altering the existing bu
Jan 1, 2015
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Shipping Ammonium Nitrate for the Cerrejon Coal Project Colombia, South AmericaBy A Gene Riggs
The Cerrejon Coal Project in Colombia, South America is one of the largest coal mines in the world. The mine is located in northeastern Colombia on the La Guajira penninsula. The area is in a remote v
Jan 1, 1984
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Intelligent Information Management for Improved Blasting Practice and Environmental ComplianceBy W. J. Birch
The recording of information is critical to the blasting process, whether it be for planning purposes, statutory requirements or environmental compliance. The review and analysis of past data can play
Jan 1, 2002
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Digital Imaging Techniques for Blasting Process Evaluation in FieldBy Stephen H. Chung
Direct visualization of rock movement during blasting is an important key to understanding the blasting process, as well as optimizing blast designs and explosives performance. To achieve this, a digi
Jan 1, 1996
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Perceptions of the Use of Explosives in Urban AreasBy Harry L. Siebert, Thomas Gelormino
Rock excavation in urban areas occurs with maximum public exposure and, with the aid of explosives, is one of the challenges facing this industry today. Such excavation is also a hidden factor in area
Jan 1, 1985
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The Drilling and Blasting Mechanics of Impact and ExplosionBy Clifton W. Livingston
This paper is the first of a series in which evidence suggesting a quantum mechanical behavior of materials in blasting and high energy impact loading is presented. Such evidence relates the mechanica
Jan 1, 1981
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The Development and Testing of a New Mechanical Stemming AidBy Paul Worsey, Terry Nixon
The development and testing of a simple mechanical stemming aid (Patents pending) resulting from a Joint venture by Incubator Technologies Inc. and the University of Missouri-Rolla and funded by the U
Jan 1, 1988
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Work Principle For Predicting Explosive Toxic FumesBy Michael S. Wieland
The work-principle method was developed for theoretically resolving toxic fumes from non-ideal charge formulations. The whole description of a wanted process refers to macroscopic changes resulting fr
Jan 1, 1998
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Blasting and Ethics – Why Should I Care?By Jim Daly
The word “Enron” has taken on a totally different meaning since its leaders were caught juggling the books, President Clinton’s reputation was destroyed not by what he did but by how he tried to cover
Jan 1, 2007