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  • NIOSH
    More Water On Upwind Drum Reduces Exposure Of Shearer Operator To Dust - Objective

    Reduce longwall shearer operators' dust exposures by more effectively suppressing the dust generated by the upwind cutting drum. Approach Direct more of the shearer water supply to the upwind

    Jan 1, 1982

  • NIOSH
    Minerals In The World Economy - Introduction (ea620add-43ed-42e4-b2a3-287c489a70ba)

    By Charles L. Kimbell

    This study is intended to serve three roles. First, it represents a global overview and summary to supplement and complement the five regional companion volumes of the 1991 edition of the Minerals Yea

    Jan 1, 1993

  • NIOSH
    Hot-Crush Process Separates Wrought And Cast Aluminum Alloys - Problem Description

    Aluminum alloys are used in two broad classifications: wrought and cast. Wrought alloy products, which are formed into final shape by rolling, forging, extruding. etc., contain low percentages of allo

    Jan 1, 1984

  • NIOSH
    Linear Coal Cutting Concept Reduces Respirable Dust Generation And Provides Larger, More Uniform Product ? Objective

    Design a high-production coal mining machine with inherent low dust generation and low frictional ignition potential. Approach Constant depth linear cutting (CDLC) provides a longterm solution t

    Jan 1, 1989

  • NIOSH
    Quieted Auger Miner Cutting Head - Objective

    Reduce the noise radiated by the auger miner cutting head (typically 105 dBA at the face) by 10 dBA without compromising the durability or productivity of the tool. Approach Research was conduct

    Jan 1, 1982

  • NIOSH
    Down-Hole Replaceable Dianlond Core Bit - Objective

    Develop a down-hole replaceable diamond core bit that will reduce overall drilling costs and increase total available drilling time per hole. Approach A one-piece diamond core drill bit of uniqu

    Jan 1, 1981

  • NIOSH
    Computer Requirements

    By C. B. Manula, R. L. Sanford, R. A. Rivell

    The need for a large capacity, high speed computer is more apparent in the revised model than in the original one. Core storage requirements for data and model logic have at least tripled. This dictat

    Jan 1, 1974

  • NIOSH
    Locating Trailing-Cable Faults Using Automated Time-Domain Reflectometry

    By George J. Conroy, Angel G. Jordan, Eugene W. Bartel

    Time-domain reflectometry has long been an accepted and used method for locating electrical faults in electrical cables. The process has, however, required the use of equipment that is somewhat comple

    Jan 1, 1979

  • NIOSH
    RI 9217 - Methods of Evaluating Explosive Reactivity of Explosive-Contaminated Solid Waste Substances

    The Bureau of Mines has developed test procedures and criteria for evaluating explosive reactivity of explosive-contaminated solid waste substances generated by U.S. Army ammunition plants. These subs

    Jan 1, 1988

  • NIOSH
    A Device For Raising Or Lowering Control Cable In A Well - Objective

    Provide a lighter, smaller apparatus for more gently supporting electrical cable as it is raised or lowered in a well as compared with the conventional method of using a winch and pulley. Approach

    Jan 1, 1986

  • NIOSH
    Remote Control Roof Bolter ? Objective

    Improve the safety of roof bolting machine operators working in underground coal mines while maintaining or improving efficiency of the roof bolting operation. Approach The Bureau of Mines fun

    Jan 1, 1986

  • NIOSH
    RI 8418 High-Temperature Enthalpy and X-Ray Powder Diffraction Data for ZrI4

    By M. J. Ferrante

    New data on zirconium tetraiodide (ZrI4) have resulted from high-temperature enthalpy and X-ray powder diffraction studies conducted by the Bureau of Mines. These studies were undertaken as part of th

    Jan 1, 1980

  • NIOSH
    Practical Boundary-Element Modeling For Mine Planning

    By Gregory J. Chekan

    As part of the initial investigation and validation of a new boundary-element formulation for stress modeling in coal mines, the underground stresses and displacements at two multiple-seam coal mines

    Jan 5, 1999

  • NIOSH
    Blast-Open Touch-Close Brattice Panels ? Objective

    Provide blasting-resistant, quickly reusable stoppings for large mine openings. Approach Stoppings are assembled using roof-to-bottom panels of brattice held together by Velcro seams that peel

    Jan 1, 1979

  • NIOSH
    Investigation Of A Rock-Burst Site, Sunshine Mine, Kellogg, Idaho

    By M. J. Friedel, D. E. Scott, T. J. Williams

    Rock masses in deep level mines are subject to high stresses, which can result in unexpected failure of rock into mined-out openings. Historically, various independent methods have been used to discer

  • NIOSH
    Air Velocity Transducer - Objective

    Continuous remote sensing of air speed In underground mine airways. Approach An ultrasonic technique measures a form of air turbulence which is proportional to air velocity. How It Works T

    Jan 1, 1982

  • NIOSH
    Borehole Device For Determining In-Place Strength Of Rock Or Coal - Objective

    To develop a simple device for rapidly determining the shearing strength and angle of Internal friction of coal and rock in situ. Approach Use a portable, permissible, hydraulically operated devi

    Jan 1, 1981

  • NIOSH
    Improved Blast Designs Reduce Rockfall Hazards ? Objective

    Develop improved blasting practices that can help to curb overbreak in highwalls at surface mines, thereby reducing the hazards of rock-falls to workers and equipment, The Problem The serious

    Jan 1, 1985

  • NIOSH
    Permissible Wireless Real Time Survey Tool - Objective

    Provide the mining industry with a wireless surveying system for increasing efficiency in the drilling of methane drainage or exploration boreholes. Approach The Bureau of Mines has pioneered th

    Jan 1, 1984

  • NIOSH
    RI 7124 Analysis Of Mineral Matter In Coals By X-Ray Fluorescence

    By Martin Berman

    The Bureau of Mines has investigated the mineral matter content of 38 American coals using X-ray fluorescence. Measurements of the Ka intensity for magnesium, aluminum, silicon, sulfur, calcium, and i

    Jan 1, 1968