| Literature DB >> 22797891 |
Matthias Frank1, Holger C Schönekeß, Frank Jäger, Heinz Hertel, Axel Ekkernkamp, Britta Bockholdt.
Abstract
Nails and driving pins discharged from powder-actuated fastening tools bear some special ballistic characteristics. Compared to the usual pistol or revolver projectiles, the sectional density (S) of fastening pins is extremely high. The general prevailing opinion is that the kinetic energy delivered by fastening tools is not high enough to cause a temporary cavity. Therefore, it was the aim of this study to investigate the wound morphology due to fastening bolts discharged from a powder-actuated direct-acting nail gun (where, in contrast to modern piston-type tools, the expanding gases act directly on the fastener) using ballistic soap blocks as simulants. For test shots, a direct-acting powder-actuated nail gun which features three interchangeable barrels (caliber (cal.) 6, 8, and 10 mm) was used. The average kinetic energy was 537, 532, and 694 J for the 6-, 8-, and 10-mm cal. bolts, respectively. Test shots on the ballistic soap blocks demonstrated that free-flying projectiles discharged from direct-acting fastening tools are able to create a temporary cavity.Mesh:
Year: 2012 PMID: 22797891 DOI: 10.1007/s00414-012-0742-2
Source DB: PubMed Journal: Int J Legal Med ISSN: 0937-9827 Impact factor: 2.686