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  • ISEE
    Reinforced Concrete Structure Failure Mechanisms Resulting from Explosively-Induced Overpressure

    By Dale Preece, Vanessa Berg

    This paper presents a two-pronged vulnerability analysis approach for treating minimally reinforced concrete (RC) structures subjected to explosive events. This work was motivated by a heightened inte

    Jan 1, 2004

  • ISEE
    Precise Timing Influence on Fragmentation Distribution by New Modelling Process

    By C. Partouche, T. Bernard

    Blasting engineers are mainly concerned about fragmentation issues. Even further, this is the final goal of using explosives. A lot of models have been developed for controlling fragmentation distribu

    Jan 1, 2002

  • ISEE
    Opportunities for Improved Safety and Mining Economics

    By Zhao Jie, Christopher G. Smith

    Commercial explosive use in China has been dominated by powdered AN-TNT mixes. Water gels and emulsions are now gaining market acceptance because they offer potential for better performance. Although

    Jan 1, 1997

  • ISEE
    The Explosives Industry and Governmental Nexus

    By Joshua Hoffman, Rhys Baker, Tim O’Brien

    Numerous agencies in the Executive Branch of the United States Federal Government have regulatory jurisdiction over the explosives industry. These agencies develop the rules by which the explosives in

  • ISEE
    The Research and Clinical Application of Micro-Explosion of the Biliary Calculi(MEBC)

    By Zhang Yangde

    "This paper reports the clinical research work of Micro-explosion of Biliary Calculi . In theprogram the technique of directional micro explosion applied to disintegrate the biliarycalculi of body and

    Jan 1, 1993

  • ISEE
    Explosive Induced Damage Potential to Earthfill Dams and Embankments

    By D O. Doehring, W A. Charlie, W A. Lewis

    The detonation of explosive charges releases large quantities of energy that can produce rock and soil deformations far from the detonation point Extensive data are available on blasting in general an

    Jan 1, 1987

  • ISEE
    Fire Protection Provided by Detonator Containers

    By Lon D. Santis

    The Code of Federal Regulations Title 30, Parts 56, 57, 75, and 77 require that detonators and explosives be separated by four inches of hardwood or equivalents when transported together in mines. Thi

    Jan 1, 1997

  • ISEE
    Deltadet System from Delta Cap

    By 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

  • ISEE
    A Method of Measuring Continuous Detonation Rates Using Off-the-Shelf Items

    By Robert A. Cortese, Lon D. Santis

    This paper describes a method of measuring continuous detonation rates using standard electronic parts, coaxial cable, and a data recorder such as an oscilloscope. Three six-volt lantern batteries or

    Jan 1, 1996

  • ISEE
    Improper Spacing; a Major Problem with Surface Blasting

    By Richard L. Ash, Calvin J. Konya

    Proper selection of the spacing distance between blastholes is fundamental to successful blasting. Its value directly affects the profitability of an operation. It also exercises control over adverse

    Jan 1, 1979

  • ISEE
    A Novel Initiating System for Blasting Explosives

    By R Fox, R Watt

    On behalf of ICI's group of explosives companies around the world, a research programme is being undertaken to develop a new electrical shotfiring system which will have markedly improved safety featu

    Jan 1, 1981

  • ISEE
    Good Blasting Practice: Need for Uniform Standards

    By Richard L. Ash

    A question that frequently arises during litigation concerned with accidents or alleged damages involving blasting is "were the explosives used according to the best known standards"" The question is

    Jan 1, 1975

  • ISEE
    Reducing Underwater Blast Damage with Air-Screens

    By Gregory L. Hempen

    "Pressure waves from submerged blasting can have adverse impacts on nearby structuresand on aquatic fauna. Underwater blasting is not allowed for some situations withoutmitigation of these adverse pre

    Jan 1, 1993

  • ISEE
    Face Velocity Measurements using a Microwave Radar Technique

    By A T. Spathis, J J. Felice, T A. Beattie

    High speed cinematography of surface blasting operations is used for diagnosing various aspects of blast performance. Several quantitative features may be derived including confirmation of the hole in

    Jan 1, 1991

  • ISEE
    Mine Blasting at the British Columbia Institute of Technology

    By Christian Dye

    "The following paper focuses on the developing relationship between the members of theInternational Society of Explosive Engineers (ISEE), and the mining students from the BritishColumbia Institute of

    Jan 1, 2016

  • ISEE
    Underwater Blasting Effects' Models: a Critical Evaluation of IBLAST

    By Thomas M. Keevin, Gregory L. Hempen

    A user-friendly model for environmental effects from underwater explosions is presently available. The model by Munday et al. (1986) is effective for determining fish mortality radii from underwater s

    Jan 1, 1995

  • ISEE
    P-Wave and S-Wave Velocity Measurement for Stress-Strain Analysis

    By Karl E. Burger

    Recently an experiment was completed at the Golden Sunlight Mine, a property owned by Placer Dome Inc. of Vancouver, British Columbia, to measure the Body Waves entering their highwall created by blas

    Jan 1, 1989

  • ISEE
    Factors Affecting Cord Sensitivity

    By Don Houston

    Vertical crater retreat mining (VCR) requires initiation methods that minimize debris in the borehole. The use of detonating cord and shock tube detonators eliminates debris that could interfere with

    Jan 1, 2002

  • ISEE
    Marine Blasting on the New Panama Canal, Pacific Entrance

    By Paulo Couceiro, Manuel Lopez Cano, Carlos Rodgriguez Calvo

    Apart from its difficult execution, underwater blasting is one of the most critical operations of the blasting techniques; mainly because of the ground vibrations - normally associated with low freque

    Jan 1, 2011

  • ISEE
    Potential Cost Cutting Methods for Permitting Deactivation Furnaces/Explosive Waste Incinerators

    By Katherine L. Heineken, Timothy J. Tope, Kim David Murphy

    One method for small arms disposal is the use of a deactivation furnace or explosive waste incinerator. There are numerous hurdles a facility typically encounters to get the furnace or incinerator ful

    Jan 1, 1997