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  • ISEE
    Nine Years of Blasting Experience with Electronic Delay Detonators

    By Claude Cunningham

    AEL has been developing electronic detonators continuously since 1986. It launched its first system for opencast mining in 1993, and now has two distinct product lines. The path has not been without g

    Jan 1, 2002

  • ISEE
    Application of Numerical Modelling to Practical Blast Design

    By P D. Katsabanis, L Liu

    Numerical modelling of fragmentation and throw is used to provide information on practical blast design parameters. The function of airdecking and its practical implications, the importance of the ini

    Jan 1, 1997

  • ISEE
    Protection from Liability Before, During, and After Blast Detonation

    By Ralph E. Burnham, J. Kelly Ratliff

    "The words “dynamite,” “TNT,” “explosives,” and “blasting” typically cause the general public, andjurors, apprehension and fear. Although blasting operations conducted by well-trained, skilled, andexp

    Jan 1, 2016

  • ISEE
    Electronic Detonators: Delivering the Advance in Hong Kong

    By Ashlin Pillay, Osamu Iwata

    Hong Kong is ranked as the world’s third most important international financial hub and attracts significant growth and development annually. The city is also known as the world's most vertical city,

    Jan 1, 2015

  • ISEE
    Impact of ROM PSD on the Crushing and Grinding Circuit Throughput

    By Split Engineering Chile Fernando Fernandez

    Mathematical modeling in conjunction with mineral characterization is widely used as a method for design and optimization of comminution circuits, to simulate the processes of crushing, grinding and c

    Jan 1, 2015

  • ISEE
    Prediction and Assessment of Rock Fragmentation by Blasting

    By D VanDoorselaere

    "Image analysis techniques are widely used for blast fragmentation measurement, and various commercial packages are available for this purpose. These packages are very versatile and serve as a useful

    Jan 1, 2007

  • 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
    High Liability Blasting Techniques and Equipment

    By Gary B. Hemphill

    Each year the demand for precision blasting increases due to the reduction in the amount of prime land. More site preparation and hone building requires blasting than they did a decade ago, Because of

    Jan 1, 1978

  • ISEE
    Potential Blaster Liability under CERCLA

    By Charles A. Kliche

    The Comprehensive Environmental Response, Compensation and Liability Act of 1980 (CERCLA) established a national program for responding to releases of hazardous substances into the environment. The fu

    Jan 1, 1997

  • ISEE
    The Effect of Inclined Boreholes on the Quality of Blast Results in Coal Mining - Comparison Between Field and Simulated Results

    By D Schneider, H Elliott

    The advantages and disadvantages of using inclined boreholes in blasting has been under discussion for a long time. Some recognized disadvantages are that drilling costs, both operating and capital co

    Jan 1, 1988

  • ISEE
    Advanced Primer Designs

    By Tim A. Beattie, John R. Grant, David L. Kennedy

    After many years of research, ICI staff have developed a numerical modelling system for the study of detonator/primer/explosive configurations. Results from this work clearly identified that current p

    Jan 1, 1991

  • ISEE
    Effect of Detonating Cord Downline on Explosive Energy Release

    By S Lukovic, Vishwa Bhushan, Calvin J. Konya

    Effect of each of these variables has been well characterized for ANFO. This paper presents results of underwater energy measurements for one watergel and one emulsion type of slurry explosive which w

    Jan 1, 1986

  • ISEE
    A Blast Vibration Prediction and Data Storage Computer Program

    By Jerry W. Schweiker

    An extensive computer program has been developed which will store and analyze pertinent blast related parameters such as date, time, shot coordinates, charge, delay times, etc. In conjunction with the

    Jan 1, 1984

  • ISEE
    Sealine Trenching with Explosive Technology

    By John J. Ridgeway

    Habits take us where we were yesterday and attitudes tend to keep us there. Until recently, little had been accomplished to improve conventional explosive energy for use offshore. But with the special

    Jan 1, 1977

  • 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
    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
    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
    Computer Aided Design of Ring Blasts

    By Calvin Konya, Theodore R. Myers, Robert Lundquist

    The design of a single, large mass blast using ring drilling may take two to three months. This time requirement inhibits the evaluation of multiple designs. It also reduces the flexibility to redesig

    Jan 1, 1990

  • 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
    The Odd Challenges of Backcountry Trail Blasting (1b065404-a403-4c07-96f7-7a9b8e26646e)

    By Miie Shields, Ed Billington

    Trail blasters for the National Park Service (NPS) live and work in remote mountain terrain throughout the western states, where any support or resupply may be sporadic and ditlicult and mountain weat

    Jan 1, 2002