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  • ISEE
    Implementing Effective Dispute Resolution Techniques in the Explosives Industry

    By E. A. McCullough, Jackson B. C., S. K. Metz

    Public perception is a significant challenge facing the explosives industry. The public often perceives that its needs and interests are in direct competition with those of blasting companies’, leadin

    Jan 1, 2015

  • ISEE
    The Effect of Bench Movement with Changing Blasthole Length

    By Rahim G. Haghighi, Calvin J. Konya

    Fragmentation is the fundamental concern of rock blasting, serving as a measure of blasting effectiveness. Fragmentation is sensitive to the inter-relationship among the design variables which define

    Jan 1, 1985

  • ISEE
    Preparation - The Key to a Good Legal Defense

    By G Alan Foster

    The presence of approximately 600,000 attorneys in the U.S.A. and the determination by the courts that blasting is considered an 'ultra hazardous' activity makes every practical blaster aware that at

    Jan 1, 1982

  • ISEE
    The Design, Implementation and Optimization of Casting Blasts in Strip Mining

    This paper describes experience in designing and implementing casting blasts over the past fifteen years. Important design parameters such as powder factor, burden and spacing, blast pattern geometry,

    Jan 1, 1995

  • ISEE
    Delay Timing and Vibration Characteristics at Low-Frequency Mine Sites

    By D E. Siskind

    The Bureau of Mines performed a comparative study of nine sites at eight surface coal mines to determine if the presence of near-surfaced underground abandoned workings resulted in the generation of a

    Jan 1, 1990

  • ISEE
    Oil & Gas Well Perforating the Other Explosive Industry

    By Richard Arsenault

    The production of oil & gas from wells requires method of flow from the producing formation into the well bore. Once the well is drilled it will have casing pipe installed to protect the integrity of

    Jan 1, 2007

  • ISEE
    Influence of Blast Delay Time on Rock Fragmentation in a 22-FT Bench

    By 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

  • ISEE
    Strategy, Innovation and Change - Challenging the Future at the Gregg River Mine

    By 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

  • ISEE
    Overview of the UNI Tronic™ Electronic Blasting System

    By Albert van Niekerk, Mick Lownds

    Overview of the UNI Tronic™ Electronic Blasting System

    Jan 1, 2004

  • ISEE
    Hole Cleaning Improvements through Tricone Bit Lug Design

    By Clarence Zink

    Aside from the mechanical properties and process of actual rock breakage, rotary drill bit performance is affected by several “post breakage” items: cuttings size, flushing air pressure, flushing air

    Jan 1, 2006

  • ISEE
    Theoretical Study and Possible Application of Blast Casting Technique in Phosphate Rock Strip Mining

    By Salah A. Taqieddin

    The blast casting technique of removing overburden is an innovative technique which was successfully used in the mining of certain surface coal and quarries. This method was found to be efficient in

    Jan 1, 1992

  • ISEE
    The Optimum Delay

    By J Foklesi, G Bohus, D Benedek

    The breakage process in blasting takes place in space and in time and the latter will determine the degree of fragmentation, shape of the muckpile and the extent of displacement. The shock wave travel

    Jan 1, 1986

  • ISEE
    Improving Fragmentation and Ore Displacement Control at Homestake McLaughlin Mine Lower Lake, California

    By Roger Lucas, Dale Nies

    The McLaughlin Mine is an open-pit disseminated gold mining operation. Homestake Mining Company's approach to solving some of the blasting problems inherent to this type of deposit provide an interest

    Jan 1, 1990

  • ISEE
    Innovative Landmine Neutralization

    By Everett Clausen, Richard Walker

    CIL/EVANinc and the Canadian Explosives Research Laboratory of the Government of Canada have evolved a concept developed by Research Energy of Ohio, into a landmine neutralization system that is the m

    Jan 1, 1999

  • ISEE
    Practical Aspects of Cast Blasting at Bulga Coal Australia

    By Tapan Goswami, Geoff Keith

    "At Bulga Coal, the objectives of drilling and blasting are to maximise safety and to minimise the totalcost of mining. A recent audit of two overburden blasts established that the standard of drillin

    Jan 1, 1999

  • ISEE
    Safe, Easier, Economican - SEE

    By John C. Didlinger

    How do you measure the highwall? Why do you even need to know the highwall measurement? Why is it important? The importance of this measurement is to help keep a level floor and to help control vibrat

    Jan 1, 1997

  • ISEE
    Blasting and Excavating on Precarious Rock Slopes

    There 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

  • ISEE
    Massive Blasting in Chuquicamata Mine

    By Sergio Segovia Parra, Victor Hernan Sheen Uriol

    This contribution of the concept of mass blasting both closing and production allows breaking paradigms, to limit the number of tons to thunder. The areas of geotechnical different mining large mining

    Jan 1, 2015

  • ISEE
    Air Blast - An Often Overlooked Cause of Structural Response

    By Douglas Rudenko

    When blasting complaints come, as an industry we often immediately look to the ground vibration as the source of the trouble. Often times we overlook or place less emphasis on the collected air overpr

    Jan 1, 2002

  • ISEE
    Various Methods of the Ground Vibration Assessment

    By Dworzak, Andrzej Biessikirski, Jozef Pyra

    During the detonation process 20-30% of the energy is being consumed only on the quarrying pro-cess. The remaining amount of the energy generates harmful effects such as: shock wave, acoustic wave, fl

    Jan 1, 2015