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Explosively Loaded Vessel for Dynamic Experiments at Advanced Photon Source
By Christian J. Sorensen, Christopher Armstrong, Andrew Matejunas
A team consisting of junior and senior mechanical engineering students at New Mexico Tech worked on the design of an explosively loaded vessel, with a maximum load of 15 grams (0.53 oz) TNT equivalent
Jan 1, 2015
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The Didcot Demolition
By 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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Methods of Evaluating and Predicting Fragmentation
By Claude Cunningham
The primary reason for blasting is to fragment rock. In production blasting, the fragment sizes produced are known to exercise an overwhelming influence over working costs: handling costs and tonnage
Jan 1, 1995
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Quantifying Your Blast Fragmentation Using Split-Desktop
By Kirstin Girdner, Tom BoBo, Brian Norton, John Kemeny
Split Engineering is a truly customer oriented company dedicated to providing quantified fragmentation information of the highest integrity to enable process management and control. Technical decision
Jan 1, 2000
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The Effect of Faults, Delay Time and Scaled Distance on Vibration Parameters
By Enver Alan, MerkeziYapı
People are migrating because of economic, social, natural and political reasons. These natural and humane factors effects the distribution of populations. The need for tunnels has grown in order to pr
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Presplitting Techniques for Conventional, Air Deck and Dimension Stone Applications
"The objective in controlled blasting is to reduce overbreak to control the final pit wall slope, shaft, drift ditch, bench, etc. to the final planned excavation limit. The six main types of controlle
Jan 1, 1994
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Modeling of Dynamic Break in Underground Ring Blasting
By Troy Williams, Chris Preston, Ian Lipchak
"Underground blasting operations are challenging from the standpoint of the distribution of explosivesenergy representative of ring blasting. Energy from both shock and pressure regimes of commerciale
Jan 1, 2016
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Maximizing Drill Factors in Construction Blasting
By Pat McLaughlin
Blast design in the construction industry has often been based on past practice or powder factors. This is to some extent understandable, since construction projects do not have the longevity of minin
Jan 1, 1994
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A Retrospective Examination of the Evolution of Electronic Detonators
By Campbell Robertson
The evolution of electronic detonators in commercial mining, construction and demolition has been a transformative journey, characterized by technological innovation, enhanced safety measures and impr
Jan 21, 2025
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Analysis of, Mining Explosion Performance with Multiple Sensor Data and Physical Models
By Robert Martin, Brian W. Stump, David P. Anderson
2We use field measurements to quantify physical processes that accompany different types of mining explosions. The data sets collected include three-component ground motion, acoustic, video and high s
Jan 1, 1998
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Rapid Chemical Destruction of Explosives in Various Materials by MuniRem®
By Charolett Hayes, A. L. Russell, Anthony J. Bednar, Jared Smith, Valentine A. Nzengung, Stephen L. Pilcher
The manufacture of Energetics Materials (EM), including maintenance and demilitarization of munitions causes dangerously high levels of explosives residues to be harbored in building features. The two
Jan 1, 2016
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Journal: 100 Years / Handling Explosives (Excerpts) Aetna Powder Company (126 pp) Chicago, 1913
By Robert Hopler
A detonator is a copper tube about a quarter of an inch in diameter and an inch and a half long, closed at one end and containing in the closed end a small charge of fulminate of mercury, which has be
Jan 1, 2014
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Synergy between Drilling/Blasting and Loading/Hauling for CO2 Emissions Combined Reduction
By Pierre De Pasquale, Aquilino Antonio Alvarez-Castro
Greenhouse gas emissions are now an essential issue for extractive industries. Actually, lowering of quarry energy consumption and CO2 emissions participates to answer both environmental and financial
Jan 1, 2016
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Journal: Musings of a Safety Philosopher Relating to Blasting Safety
By 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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A New Generation of Shock Tube Detonators
By John Watson
The earliest known records related to mining document in dramatic terms the fact that mining methods have undergone significant change over the centuries. Wooden wedges, hammers and chisels, “fne sett
Jan 1, 1997
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Blasting Specifications and Guidelines for Protective and High-Profile Blasting
By Brian Lewis, Reinhold Daykin Schnell
Blasting specifications and guidelines are very important aspects of detailed project specifications covering any scope of work (SOW) that involves explosives and blasting procedures. A lot of larger
Feb 6, 2023
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"Journal: 100 Years / Mining & Scientific Press San Francisco April 10, 1909 / Methods of Testing Electric Detonators"
By William Nicoll
Those who use electric detonators in firing blasts will be interested in a new electrical testing instrument known as the ‘Blasters’ Friend’, recently devised by the New York Blasting Supply Co. of Ne
Jan 1, 2010
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Preventing the next Terrorist Attack is a Shared Responsibility
By Joseph Kennedy
How do terrorists and other criminal bombers acquire explosives to be used in an attack against U.S property and/or citizens? The Bureau of Alcohol, Tobacco, Firearms and Explosives (ATF) with nearly
Jan 1, 2010
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Seismic Surveying, Instrumentation and Applications
By Bruce B. Redpath, Doug Crice, Rob Huggins
Over the last decade, instrumentation has been developed that allows the application of seismic reflection methods to groundwater and engineering problems. At the Geological Survey of Canada, we have
Jan 1, 1991
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Tigerwin Code, Thermodynamics and Detonations
By Pr-Anders Persson
This chapter deals with the concepts of shock waves and detonation waves together, because a detonation wave is really a shock wave, supported by the explosive reaction that the shock wave ignites and
Jan 1, 1995