New PDF release: Advances in Ceramic Armor II: Ceramic Engineering and

By Andrew Wereszczak, Edgar Lara-Curzio, Lisa Prokurat Franks

ISBN-10: 0470080574

ISBN-13: 9780470080573

ISBN-10: 0470291362

ISBN-13: 9780470291368

Those lawsuits comprise present examine from undefined, academia and govt enterprises, engaged on opaque and obvious ceramic armor. Papers on novel fabrics recommendations for either automobile and physique armors are incorporated, in addition to papers that discover the connection among computational modeling and estate testing.

those papers have been offered on the lawsuits of the thirtieth overseas convention on complicated Ceramics and Composites, January 22-27, 2006, Cocoa seashore, Florida. equipped and backed through the yankee Ceramic Society and the yankee Ceramic Society's Engineering Ceramics department along with the Nuclear and Environmental know-how Division.Content:
Chapter 1 A overview of Computational Ceramic Armor Modeling (pages 1–18): Charles E. Anderson
Chapter 2 Biomorphic Sisic?Materials for light-weight Armour (pages 20–31): Bernhard Heidenreich, Michaela Gahr, Dr. Ing. Ekkehard Lutz and Elmar Stra?urger
Chapter three evaluate of SiC Armor Tile utilizing Ultrasonic suggestions (pages 33–41): J. Scott Steckenrider, William A. Ellingson, Rachel Lipanovich, Jeffrey Wheeler and Chris Deemer
Chapter four round Indentation of SiC (pages 43–57): A. A. Wereszczak and okay. E. Johanns
Chapter five harm Modes Correlated to the Dynamic reaction of SiC?N (pages 59–68): H. Luo and W. Chen
Chapter 6 Grain Boundary Chemistry of SiC?Based Armor (pages 69–84): Edgardo Pabit, Kerry Siebein, Darryl P. Butt, Helge Heinrich, Darin Ray, Sarbjit Kaur, R. Marc Flinders and Raymond A. Cutler
Chapter 7 impact of Microstructure and Mechanical houses at the Ballistic functionality of SiC?Based Ceramics (pages 85–96): Darin Ray, R. Marc Flinders, Angela Anderson, Raymond A. Cutler, James Campbell and Jane W. Adams
Chapter 7 Addition of extra Carbon to SiC to check its influence on Silicon Carbide (SiC) Armor (pages 97–103): Chris Ziccardi and Richard Haber
Chapter nine research of Time?Resolved Penetration of lengthy Rods into Glass Targets—II (pages 106–118): Charles E. Anderson, I. Sidney Chocron and Carl E. Weiss
Chapter 10 reaction and Characterization of restrained Borosilicate Glass: Intact and broken (pages 119–130): Kathryn A. Dannemann, Arthur E. Nicholls, Charles E. Anderson, Sidney Chocron and James D. Walker
Chapter 12 Constitutive version for broken Borosilicate Glass (pages 131–142): Sidney Chocron, James D. Walker, Arthur E. Nichoils, Charles E. Anderson and Kathryn A. Dannemann
Chapter 12 response Sintered LiAlON (pages 143–154): Raymond A. Cutler and R. Marc Flinders
Chapter thirteen huge zone EFG™ Sapphire for obvious Armor (pages 155–163): Christopher D. Jones, Jeffrey B. Rioux, John W. Locher, Herbert E. Bates, Steven A. Zanella, Vincent Pluen and Mattias Mandelartz
Chapter 14 dating of Microstructure and Hardness for A12O3 Armor fabrics (pages 166–178): Memduh Volkan Demirbas and Richard A. Haber
Chapter 15 Root explanations of the functionality of Boron Carbide less than pressure (pages 179–188): Giovanni Fanchini, Dale E. Niesz, Richard A. Haber, James W. McCauley and Manish Chhowalla
Chapter sixteen research of Texture in managed Shear Processed Boron Carbide (pages 189–195): D. Maiorano, R. Haber and G. Fanchini
Chapter 17 development within the Nondestructive research of influence harm in TiB2 Armor Ceramics (pages 198–209): Joseph M. Wells
Chapter 18 Elastic estate choice of WC Spheres and Estimation of Compressive quite a bit and influence Velocities that begin their Yielding and Cracking (pages 211–223): A. A. Wereszczak
Chapter 19 at the function of impression harm in Armor Ceramic functionality (pages 225–236): Joseph M. Wells
Chapter 20 The Indentation measurement impact (ISE) for Knoop Hardness in 5 Ceramic fabrics (pages 237–249): Trevor Wilantewicz, W. Roger Cannon and George Quinn
Chapter 21 impression of Microstructure at the Indentation?Induced harm in Silicon Carbide (pages 251–259): Jeffrey J. Swab, Andrew A. Wereszczak, Justin Pritchett and Kurt Johanns

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Additional info for Advances in Ceramic Armor II: Ceramic Engineering and Science Proceedings, Volume 27, Issue 7

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Compared to former results of internal investigations, this new biomorphic SiSiC materials showed a better ballistic performance than conventional reaction bonded, silicon infiltrated Sic materials and seems to be comparable even to liquid phase sintered S i c materials (LPSSC), commonly used for lightweight armour systems. This LPSSC is manufactured on the basis of fine ceramic powders of Sic and alumina at sintering temperatures above 2000 "C and pressures of 20 - 30 MPa. Compared to the LPSSC, the biomorphic SiSiC materials has great advantages, regarding the manufacturing costs and the feasibility of complex structures, and therefore offers a high potential for the use in future lightweight amour systems.

Due to the large deformation of the aramid laminates most of the ceramic fragments were separated from the backing. Advances in Ceramic Armor II . 27 Biomorphic SiSiC Materials for Lightweight Armour 800 700 600 -f, 600 400 > 300 200 100 0 800 850 700 750 800 850 900 VP tmlsl Fig. 5 : Residual velocity VR versus impact velocity vp for the different sample targets, based on ceramic tiles with different thicknesses and on aramid backing. Fig. 62 mm x 51 AP. With both target samples the projectile was stopped and the hardened steel core was destroyed.

The parameter K and the ballistic limit velocities VBL were determined by a least squares fit of the experimental data. 40), resulting in a higher density and significantly higher mechanical properties (Table II). Fig. 4: SEM image (200 x, polished, cross section) of biomorphic SiSiC derived from MDF (left) and WBC (right) consisting of Sic (dark gray), C (black) and Si (light gray). 26 . Advances in Ceramic Armor II Biomorphic SiSiC Materials for Lightweight Armour Table I1:Mechanical properties of tested alumina and biomorphic SiSiC materials compared to conventional reaction bonded SIC.

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