Download PDF by Andrew Wereszczak, Edgar Lara-Curzio, Lisa Prokurat Franks: 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 court cases comprise present study from undefined, academia and govt businesses, engaged on opaque and obvious ceramic armor. Papers on novel fabrics strategies for either automobile and physique armors are integrated, 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 foreign convention on complicated Ceramics and Composites, January 22-27, 2006, Cocoa seashore, Florida. equipped and backed through the yankee Ceramic Society and the yank Ceramic Society's Engineering Ceramics department at the side of the Nuclear and Environmental expertise Division.Content:
Chapter 1 A assessment 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 recommendations (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 impression 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 review its impression 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 limited 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 region 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 courting 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 below rigidity (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 impression harm in TiB2 Armor Ceramics (pages 198–209): Joseph M. Wells
Chapter 18 Elastic estate choice of WC Spheres and Estimation of Compressive lots and impression Velocities that start up their Yielding and Cracking (pages 211–223): A. A. Wereszczak
Chapter 19 at the position of impression harm in Armor Ceramic functionality (pages 225–236): Joseph M. Wells
Chapter 20 The Indentation dimension impression (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

Example text

Johanns Ceramic Science and Technology Oak Ridge National Laboratory Oak Ridge, TN 37831 ABSTRACT Instrumented Hertzian indentation testing was performed on several grades of Sics and the results and preliminary interpretations are presented. The grades included hot-pressed and sintered compositions. One of the hot-pressed grades was additionally subjected to high temperature heat treatment to produce a coarsened grain microstructure to enable the examination of exaggerated grain size on indentation response.

6. As higher peak loads are applied the amount of hysteresis continues to increase. The amount of hysteresis becomes noticeable at 36 N (21. 3 GPa), and becomes more pronounced at higher forces and average contact stresses. 4 GPa). Figure 6. Indentation response in Sic-N as a function of load with a 300 pm diameter indenter. Advances in Ceramic Armor II . 49 Spherical Indentation of Sic I1p , . , , , , , . , , . , , . , , , . , Figure 7. Cyclic load-indenter-depth-of-penetrationas a function of peak load in Sic-N with a 300 pm diameter indenter.

The load-penetration curves for each are shown in Fig. 15. Load to the twothirds power is plotted as an abscissa because the depth of penetration as a function of P2” is linear when pure elasticity exists and it can be a convenient way to portray this functionality for spherical indentation. The shapes of the curves for the Sic-N, SIC-B and Ceralloy 146 are similar with subtle differences in their hystereses. The Sic-SC-1R is noticeably different. If one subtracts the two curves (see Fig. 15e), then some of the subtle differences in Figs.

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Advances in Ceramic Armor II: Ceramic Engineering and Science Proceedings, Volume 27, Issue 7 by Andrew Wereszczak, Edgar Lara-Curzio, Lisa Prokurat Franks


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