By L. Franks
Papers from the yankee Ceramic Society's thirty first overseas convention on complicated Ceramics and Composites, held in Daytona seashore, Florida, January 21-26, 2007. themes contain obvious ceramics for impression resistance, defense opposed to mine blast and fragments, demanding situations dealing with ceramic armor brands, novel fabric techniques and improvement of legitimate armor layout and characterization instruments to foretell functionality for air and floor automobiles in addition to the person soldier.
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Extra info for Advances in Ceramic Armor III: Ceramic Engineering and Science Proceedings
134, J. W. YcCauley et al. (Eds), 1 13-38 (2002). Z . Rozenberg and Y. , 7 , 357-62, (1988). I. D. Elgy, I. M. Pickup and P. L. Gotts, "Determination of the critical components of a complex personal armour rigid plate". posiitm(PASS2006). Royal Armouries Museum, Leeds, UK, 1XIh -22"d September (2006). J. C. F. Millett and N. K. Bourne, "Shock and release of polycarbonate under one-dimensional strain". J. Muter. , 41: 1683-90, (2006). ' ' ' 26 Advances in Ceramic Armor 111 The Influence of Tile Size on Ballistic Performance of a Ceramic-Faced Polymer ' D.
J. Numer. Meth. Engng. 1-3 (2000). H. Song, P. M. A. Areias and T. Belytschko, “A method for dynamic crack and shear band ropagation with phantom nodes,” Int. J. Numer. Meth. Engng. 868 - 893 (2006). M o h o , Z. Bao and R. Fedkiw, “A Virtual Node Algorithm for Changing Mesh Topology During Simulation,” International Confirence on Computer Graphics and Interactive Techniques. 385-392 (2004). kJ. 44 . Advances in Ceramic Armor 111 Advances in Ceramic Armor III Edited by Lisa Prokurat Franks Copyright 02008 The American Ceramic Society HIERARCHY OF KEY INFLUENCES ON THE BALLISTIC STRENGTH OF OPAQUE AND TRANSPARENT ARMOR Andreas Krell Fraunhofer Institut fur Keramische Technologien und Systeme (IKTS) WinterbergstraBe 20 D - 01277 Dresden, Germany Elmar Strassburger Fraunhofer Institut f i r Kurzzeitdynamik (EMI) Am Klingelberg 1 D - 79588 Efringen-Kirchen, Germany ABSTRACT A hierarchic order of influences on the wear resistance of ceramics is adopted here and applied in a modified form on recent ballistic results with sub-micrometer opaque and transparent oxide armor in order to understand interactions between different parameters that govern the ballistic strength.
H. Geubelle, “A cohesive model for fatigue failure of polymers,“ Engij7eering Frucrure Mechanics 72 691-708 (2005). Advances in Ceramic Armor I l l 43 Static and Dynamic Indentation Response of Fine Grained Boron Carbide I0 T. S. Srivatsan. R. Woods, M. Petraroli and T. S. , 122 [ I ] 54-60 (2002). ’OS. Nemat-Nasser. “Recovery Hopkinson Bar Techniques,” ASM Hund Book, 8, 4 7 7 4 8 7 (2000). ”D. K. Shetty, I. G. Wright, P. N. Mincer and A. H. Clauer, “Indentation Fracture of WC-Co Cerniets,“J. Muter.
Advances in Ceramic Armor III: Ceramic Engineering and Science Proceedings by L. Franks