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  • ISEE
    Blasting at a Superfund Chemical Waste Site

    By Douglas R. Burns

    During the summer of 1989, Maine Drilling and Blasting of Gardiner, Maine was contracted by Cayer Corporation of Harvard, Massachusetts to drill and blast an interceptor trench at the Nyanza Chemical

    Jan 1, 1991

  • ISEE
    Damage Causing Potential of Different Explosives

    "Blasting is an inherently destructive process and inflicts damage to the immediateperiphery of an excavation, which is later manifested as ground control and dilutionproblems. Different explosives re

    Jan 1, 1993

  • ISEE
    Electronic Blast Initiation - A Practical Users Guide

    By John Watson

    New Technologies, New Challenges and New Opportunities For quite some time now, numerous explosive manufacturers have spent untold man-hours and millions of dollars trying to develop a blast initiatio

    Jan 1, 2003

  • ISEE
    The Reliability of Peak Particle Velocity Analysis Methods

    By N. Powell, P. Hunt, A. Wetherelt

    This paper considers the current methods of analysis employed, the validity of assumptions made and the reliability of results and predictions derived; where appropriate, alternative methods are propo

    Jan 1, 2003

  • ISEE
    Drill Monitoring and GPS Developments and their Impact on the Drill to Mill Process

    By John Vynne

    Too often, a mine’s operations, including drilling, blasting, loading, hauling, crushing, processing, etc., are considered independent steps, rather then a continuous process. In fact, these are inter

    Jan 1, 2001

  • ISEE
    Richter Scale and PPV

    By Wilfrid Comeau

    The RICHTER scale is used in classifying earthquake severity. It is an energy scale giving the estimated energy liberated at the source of the earthquake. Earthquake damage on the earth’s surface, for

    Jan 1, 2003

  • ISEE
    A Fragmentation Model to Estimate ROM Size Distribution of Soft Rock Types

    By J. Esterle, J. Kruttschnitt

    Fragmentation modelling in soft rocks presents a challenge due to their propensity to further fragment after blasting during normal handling. Coal and some iron ore deposits are examples of materials

    Jan 1, 2001

  • 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
    Submarine Blasting at Palmer Station, Antarctica

    By John Wright

    During June and July 1999 a United States Antarctic Program (USAP) team of three commercial divers and one blaster successMy removed an underwater rock obstruction which interfered with safe docking p

    Jan 1, 2001

  • ISEE
    Factors that Affect the Chemical Gassing of Emulsion Explosives

    By John S. Manka

    Of the various methods used to reduce the density of emulsion explosives prior to detonation; ammonium nitrate prill addition, glass micro-balloon addition and chemical gassing, chemical gassing is th

    Jan 1, 2004

  • ISEE
    Comparison of Highwall Control Methods at Bayswater Colliery

    By Tapan Goswami, Michael Croucher

    At Bayswater Colliery various methods of controlling highwall stabii were investigated. The use of presplitting was trialled and its effectiveness measured. The presplit hole spacing and explosive cha

    Jan 1, 1999

  • 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
    Defining Detonation Energy Fro Practical Blasting

    By Claude Cunningham

    Simple bulk energy rating of explosives obscures the realities of how these deliver their energy, and diverts attention from the key question of controlling blasting results. Explosive performance is

    Jan 1, 2002

  • 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
    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
    Highwall Safety

    By John C. Didlinger, John L. Didlinger

    As we begin the pre-blast survey we need to decide on the number of holes needed for production and a detailed highwall inspection. The survey consists of checking the highwall and placement of barrie

    Jan 1, 1996

  • ISEE
    A Multiple Blasthole Fragmentation (MBF) Model Based on Non-linear Charge Scaling, Delay Time Contribution, and Rock Dynamic Fracture

    By Ruilin Yang

    This paper presents a fragmentation model for large production blasts. The model uses peak particle velocity (PPV) induced from the blast as a controlling parameter to predict the fragmentation size d

    Jan 1, 2015

  • ISEE
    Digital Shock Tube

    By Theirry Bernard

    The era of non-electric systems as an initiating system has revolutionised the blasting world by introducing a very safe initiating system that is reliable, with initiation sequence possibilities that

    Jan 1, 2007

  • ISEE
    The Explosives Industry and Governmental Nexus

    By Rhys Baker, Tim O’Brien, Joshua M. Hoffman

    This paper discusses this division of power as it relates to the explosives industry. Each branch is responsive to the public and the processes through which each promulgates regulation and legislatio

    Feb 1, 2020

  • ISEE
    Blasting 250 Feet from a Historic Structure

    A case history is presented where a variance was permitted by the court to change a 500 foot limit to 250 feet for blasting overburden at a surface coal mine in the proximity of a historic structure.

    Jan 1, 1991