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  • ISEE
    Loading Explosives in Large-Diameter Upholes

    By D K. Joyce

    Large diameter boreholes have become increasingly popular in underground mining. Drilling equipment can drill full rings, including vertical upholes. Special techniques are required to load upholes of

    Jan 1, 1988

  • ISEE
    A New Innovative Drilling Bit for Straighter Blast Holes and Improved Productivity

    By R D. Skaggs

    A good blast is dependent on a well engineered design. However, a good design's performance depends on the control of the drilling and loading of the blast holes. The key stone to good blasting is the

    Jan 1, 1991

  • ISEE
    Surface Blasthole Geometry and Explosives Selection in the Great Lakes Region

    By Donald J. Westmaas, Fred C. Drury

    The Great Lakes Region, in the states of Illinois, Indiana, Michigan and Ohio, uses approximately 14% of the explosives annually consumed in the United States. While materials being blasted differ wid

    Jan 1, 1979

  • ISEE
    Drill/Blast Hands-On Teaching

    By D Reid Watson

    A unique blend of theory and hands-on teaching of blast hole drilling and explosives technology is being provided at a Canadian Community College. Students graduate at an apprentice level quite capabl

    Jan 1, 1987

  • ISEE
    Effects of Muck Size Distribution on Scooping Operations

    By S. P. Singh, Turgut Yalcin

    The physical characteristics of blasted rock are fundamental variables affecting the economics of mining operations and are in fact the basis for evaluating the quality of a blast. A study was designe

    Jan 1, 2002

  • ISEE
    Techniques for the Evaluation of Rock Mass Structure and Strength in Blast Design

    Blast performance is related to rock structure and strength, as well as to factors such as site geometry, drill patterns, explosives loading, firing sequences and delays.

    Jan 1, 1986

  • ISEE
    Organization - Key to Success

    By Sandra K. Penttinen

    A difficult blasting project can go very smoothly when every precaution is taken prior to and during the blasting procedures. These precautions include conducting careful preblast condition surveys of

    Jan 1, 1994

  • 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
    Powder Emulsion Explosives

    By Shao Li, Chen Zhiming, Wu Jihong

    In this paper,powder emulsion explosives,which have high sensitivity and strong detonation force,have been studied by applying emulsion technology to the production of the present powder ones.Under th

    Jan 1, 1991

  • ISEE
    Storage of Technical (Porous) Ammonium Nitrate

    By Erik Nygaard

    During the last years, ammonium nitrate has been involved in several accidents worldwide. This have caused increased focus on security and safety issues and resulted in:• Revised Yara standards • Revi

    Jan 1, 2008

  • ISEE
    Boosters for Explosives

    By E E. Cloete, R I. McCrindle

    Permitted explosives were previously nitroglycerine based and cap sensitive. Due to safety, health and environmental requirements, water-containing explosives, such as watergels and emulsions, were us

    Jan 1, 1999

  • ISEE
    Emergency Escapeway Holes Through in Five Shifts

    By Jim Breedlove, Stephen P. Case

    When a major ground subsidence occurred in the AKZO Salt mine at Retsof New York, the company was forced to pick up their production from a lower mine level. Before full production on the lower level

    Jan 1, 1995

  • ISEE
    Technology of Deep-Hole Blasting with Water-Soil Mixed Stemming to Exposed Stonework

    By He Guangyi, Han Zhilong

    This paper introduces the new technology of deep-hole blasting with water-soil mixed stemming to exposed stonework. Nine aspects of advantages are drawn in the paper based on tests of different types

    Jan 1, 1998

  • 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

  • ISEE
    The Science and Testing Behind Quantitative Risk Assessment Models

    By Michael Swisdak, John Tatom

    In a quantitative risk assessment (QRA), the ability to accurately model real-world situations is obviously critical. In the end, the model must be able to represent the effects produced by the detona

    Jan 1, 2007

  • ISEE
    Status of International Standards on Blasting

    By Gerald R. Coonan

    I'm really here to talk about my pet subject of government relations. I've been in Peabody's Environmental Quality Department, working on regulations, for over five years, and I have seen a number of

    Jan 1, 1980

  • ISEE
    Dugout Blasting for Livestock Water

    By Mike Cammack

    Western South Dakota is predominately an agricultural area, with exception of the mining and timber industries in the Black Hills region. With precipitation rates averaging below fifteen inches per ye

    Jan 1, 1993

  • ISEE
    "Frequency Adjustment" with High Accuracy Detonators

    By Ken C. Pruss

    Seismic studies have proven that the frequency with which shock or vibration waves are reacting on a structure, in correlation with the amplitude of those waves, has a definite affect of structural da

    Jan 1, 1989

  • ISEE
    RF Sensitivity Testing of an RF-Safe Electric Detonator

    By James Barker, David Leidel, Don Crawford, Daniel Dorffer

    This paper describes the test processes performed to ensure the suitability of an RF-safe detonator for use in oilfield explosives operations on land and offshore locations where RF silence cannot be

    Jan 1, 2008

  • ISEE
    When Open Pit Operations Intersect Old Underground Workings

    By Joe Sr Strobbe

    In 1933 the Cobre Mining Company re-opened the 32-year-old UV Industry Mine, which is located in a scenic canyon near Silver City, New Mexico. The site location is shown in Figure 1. Current mineral e

    Jan 1, 1998