• Title of article

    Microstructural characterization of pipe bomb fragments

  • Author/Authors

    Gregory، نويسنده , , Otto and Oxley، نويسنده , , Jimmie and Smith، نويسنده , , James and Platek، نويسنده , , Michael and Ghonem، نويسنده , , Hamouda and Bernier، نويسنده , , Evan and Downey، نويسنده , , Markus and Cumminskey، نويسنده , , Christopher، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2010
  • Pages
    8
  • From page
    347
  • To page
    354
  • Abstract
    Recovered pipe bomb fragments, exploded under controlled conditions, have been characterized using scanning electron microscopy, optical microscopy and microhardness. Specifically, this paper examines the microstructural changes in plain carbon-steel fragments collected after the controlled explosion of galvanized, schedule 40, continuously welded, steel pipes filled with various smokeless powders. A number of microstructural changes were observed in the recovered pipe fragments: deformation of the soft alpha-ferrite grains, deformation of pearlite colonies, twin formation, bands of distorted pearlite colonies, slip bands, and cross-slip bands. These microstructural changes were correlated with the relative energy of the smokeless powder fillers. The energy of the smokeless powder was reflected in a reduction in thickness of the pipe fragments (due to plastic strain prior to fracture) and an increase in microhardness. Moreover, within fragments from a single pipe, there was a radial variation in microhardness, with the microhardness at the outer wall being greater than that at the inner wall. These findings were consistent with the premise that, with the high energy fillers, extensive plastic deformation and wall thinning occurred prior to pipe fracture. Ultimately, the information collected from this investigation will be used to develop a database, where the fragment microstructure and microhardness will be correlated with type of explosive filler and bomb design. Some analyses, specifically wall thinning and microhardness, may aid in field characterization of explosive devices.
  • Keywords
    Steel microstructure , High strain rate loading , Pipe bomb
  • Journal title
    Materials Characterization
  • Serial Year
    2010
  • Journal title
    Materials Characterization
  • Record number

    2267716