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  • ISEE
    Developing Safety in United Kingdom Drilling Operations

    By Rob Farnfield, Ben Williams, Bob Woolley

    This paper outlines how drilling safety standards are being driven forward in the United Kingdom’s surface mining and quarrying industry with developments in equipment, procedures and competence.

    Jan 1, 2010

  • ISEE
    Journal: 100 Years / DU PONT BLASTING POWDER 1913

    By Robert Hopler

    In use, blasting powder is exploded by a spark from fuse, electric squib or miner’s squib, or by a primer of some high explosive, the last being employed only in heavy charges on open work. In mining,

    Jan 1, 2014

  • ISEE
    Blast Fume Management

    By Alan B. Richards, Aleks Todoroski

    The undesirable effects of blasting fumes can be controlled by minimising the amount of fume created, and by avoiding the movement of the fume plume to sensitive locations. Substantial progress has be

    Jan 1, 2017

  • ISEE
    Blasting with Used Oil/Diesel Blend at Echo Bay Minerals - McCoy/Cove Mine

    By Sally Lynn Zadra

    "In May, 1994, Echo Bay Minerals - McCoy/Cove Mine petitioned for approval to recycle used oil formanufacturing ANFO. Recycling oil in this way will result in a cost savings for the minesite as well a

    Jan 1, 1996

  • ISEE
    Pneumatic Loading of ANFO Underground

    By J J. F Smith

    The application of pneumatically loaded ANFO for underground mining has continued to increase year by year since the technique was first developed and introduced underground during the early 1960's. I

    Jan 1, 1982

  • ISEE
    Electric Explosive Tube Initiation System

    By Richard N. Snyder

    In this system for connecting blasting caps to the initiation source, the need for a redundant design structure provides more reliable method of explosive initiation. This is accomplished by using a c

    Jan 1, 1995

  • ISEE
    Elevated Temperature and Reactive Ground Testing Best Practices

    By D. Fry, S. Hunsaker

    Ammonium nitrate in explosives and sulfides in reactive ground have the potential to react at ambient and elevated temperatures resulting in premature detonations. The Australasian Explosives Industry

    Jan 1, 2024

  • ISEE
    ICI's ExEx2000 Blasting Systems

    By Peter Duniam, Vivian Patz

    History of the ExEx 1000 CAB system. l What we’ve learned using electronic timing. l Requirements for a second generation. EDD system. l The ExEx 2000 system - simple, versatile and cost effective

    Jan 1, 1997

  • ISEE
    Calculating Shock Wave Over pressure from High-Speed Video

    By Catherine Johnson, Kelly Williams

    The ability to measure the overpressure of a shock wave is necessary for explosives research such as shockwave focusing and field testing of blast-resistant designs for buildings and vehicles. To reco

  • ISEE
    Surface Blaster Training and Licensing in Pennsylvania

    By Charles A. Nork

    Licensing of surface blasters as a regulatory requirement has been in effect in Pennsylvania for more than twenty years. Training of license applicants was begun in 1971 on a random basis. Formalizati

    Jan 1, 1985

  • 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
    Estimating Underground Mine Damage Produced by Blasting

    By Thomas E. Ricketts

    An important part of underground mine planning and operations involves the reclamation of working areas after blasting before the mining cycle can continue. This is especially true for mining that mus

    Jan 1, 1988

  • ISEE
    Sources of Variability in Rock Hardness During Crater Blasting

    By Bradley C. Paul

    Similar rock formations exhibit great variability in resistance to fragmentation during crater blasting. This observation was made during an attempt to calibrate the Kuz-Ram blast fragmentation model

    Jan 1, 1989

  • ISEE
    Effective Construction Blasting Damage Control

    By Earl C. Hutchison, Gene Smith

    Extensive blasting was required to construct an underground tunnel for a 90 inch sewerage relief line. The tunnel and required excavation extended under an upper middle-class residential area in Atlan

    Jan 1, 1981

  • ISEE
    Controlled Perimeter Blasting in Cold Regions

    By Malcolm Mellor

    Practical procedures that have been developed for pre-split blasting and smooth blasting in common rocks are reviewed systematically. Topics covered include shothole spacing, charge weight per unit le

    Jan 1, 1976

  • ISEE
    Dilution Control While Maximizing Fragmentation in Gold Mines with the Use of Tracking Microchips Benjamin Cebrian

    By David Flores, Benjamin Cebrian

    This paper describes extensive engineering approaches to achieve both dilution control while not hurting fragmentation in the very hard, massive ore sections of a mine case study. Ore Tracker microchi

    Feb 1, 2020

  • ISEE
    Blast Induced Vibrations in Malmberget

    By Anders Nordqvist

    LKAB operates an underground iron ore mine in Malmberget in the northern part of Sweden. Twelve different orebodies are mined today using both longitudinal and transversal sublevel caving as mining me

    Jan 1, 2018

  • ISEE
    Creating Awareness About Carbon Monoxide - Blasters Should Know About the Silent Hazard

    By Unknown

    [Executive Director’s note: According to 17th edition of the ISEE Blasters Handbook in its section on trench blasting, “...consideration must be given to the proper venting of gases generated from the

    Jan 1, 2002

  • ISEE
    Tug Fork Big Bend Cutoff Blast Monitoring Study

    By Charles E. Joachim

    Railroad and blast induced vibrations were measured in the vicinity of the proposed Big Bend Cutoff. Peak horizontal and vertical particle velocity relations were developed using least squares regress

    Jan 1, 1984

  • ISEE
    Unusual Accidents Caused by ESD

    By James G. Stuart

    For precise control and timing of a blast, people use electric detonators. Most of these contain a fine metal “bridgewire,” that heats to the required burning temperature when electric current passes

    Jan 1, 2005