Get Advances in Ceramic Armor IV: Ceramic Engineering and PDF

By Tatsuki Ohji, Andrew Wereszczak(eds.)

ISBN-10: 0470344970

ISBN-13: 9780470344972

ISBN-10: 0470456280

ISBN-13: 9780470456286

This quantity offers a one-stop source, compiling present study on ceramic armor and addressing the demanding situations dealing with armor brands. it's a number of papers from the yank Ceramic Society s thirty second overseas convention on complicated Ceramics and Composites, January 27-February 1, 2008. subject matters contain novel fabrics thoughts for either car and physique armors, obvious ceramics for influence resistance, and extra. it is a important, up to date source for researchers in undefined, govt, or academia who're operating with ceramic armor.Content:
Chapter 1 Mesomechanical Constitutive kinfolk for Glass and Ceramic Armor (pages 1–13): D. R. Curran, D. A. Shockey and J. W. Simons
Chapter 2 Optimizing obvious Armor layout topic to Projectile effect stipulations (pages 15–22): Xin solar, Kevin C. Lai, Tara Gorsich and Douglas W. Templeton
Chapter three Physics of Glass Failure in the course of Rod Penetration (pages 23–32): D. A. Shockey, D. Bergmannshoff, D. R. Curran and J. W. Simons
Chapter four Adhesive Bond overview in Laminated safeguard Glass utilizing Guided Wave Attenuation Measurements (pages 33–44): S. Hou and H. Reis
Chapter five utilizing Modeling instruments to foretell functionality of obvious Ceramic Laminate Armors (pages 45–53): C.G. Fountzoulas, J.M. Sands, G.A. Gilde and P.J. Patel
Chapter 6 An fiscal comparability of sizzling urgent vs. Pressureless Sintering for obvious Spinel Armor (pages 55–62): A. LaRoche, okay. Rozenburg, J. Voyles, L. Fehrenbacher and Gary Gilde
Chapter 7 Advances in Ballistic functionality of Commercially to be had Saint?Gobain Sapphire obvious Armor Composites (pages 63–74): Christopher D. Jones, Jeffrey B. Rioux, John W. Locher, Vincent Pluen and Matthias Mandelartz
Chapter eight illness loose Spinel Ceramics of excessive power and excessive Transparency (pages 75–85): Juan L. Sepulveda, Raouf O. Loutfy and Sekyung Chang
Chapter nine contemporary effects at the basic functionality of a Hot?Pressed Silicon Carbide Impacted through Sub?Scale Long?Rod Penetrators (pages 87–97): Jerry C. LaSalvia, Brian Leavy, Herbert T. Miller, Joshua R. Houskamp and Ryan C. McCuiston
Chapter 10 Instrumented Hertzian Indentation research of 2 Commerical Silicon Carbides (pages 99–105): H.T. Miller, R.C. McCuiston and J.C. LaSalvia
Chapter eleven obvious Yield power of Hot?Pressed SiCs (pages 107–118): W. L. Daloz, A. A. Wereszczak and O. M. Jadaan
Chapter 12 Microstructural exam and Quasi?Static estate decision of Sintered Armor Grade SiC (pages 119–127): Memduh V. Demirbas, Richard A. Haber and Raymond E. Brennan
Chapter thirteen Quantitative Characterization of Localized Amplitude adaptations in Silicon Carbide Ceramics utilizing Ultrasound C?Scan Imaging (pages 129–139): Raymond Brennan, James McCauley, Richard Haber and Dale Niesz
Chapter 14 Grain Boundary Engineering of Silicon Carbide by way of Coprecipitation (pages 141–152): Steven Mercurio, Mihaela Jitianu and Richard A. Haber
Chapter 15 the prospective Roles of Stoichiometry, Microstructure, and Defects at the Mechanical habit of Boron Carbide (pages 153–162): Ryan McCuiston, Jerry LaSalvia, James McCauley and William Mayo
Chapter sixteen A evaluate of Ceramics for Armor functions (pages 163–175): P. G. Karandikar, G. Evans, S. Wong, M. ok. Aghajanian and M. Sennett
Chapter 17 a conveyable Microwave Scanning process for Nondestructive checking out of Multilayered Dielectric fabrics (pages 177–189): Karl Schmidt, Jack Little and William A. Ellingson
Chapter 18 Ballistic harm review of a skinny Compound Curved B4C Ceramic Plate utilizing XCT (pages 191–197): J.M. Wells and N.L. Rupert
Chapter 19 overview of Ballistically?Induced harm in Ceramic ambitions through X?ray Computed Tomography (pages 199–210): William H. eco-friendly, Herbert T. Miller, Jerry C. LaSalvia, Datta P. Dandekar and Daniel Casem
Chapter 20 automatic Non?Destructive evaluate process for challenging Armor protecting Inserts of physique Armor (pages 211–218): Nicholas Haynes, Karl Masters, Chris Perritt, David Simmons, Dr. James Zheng and Dr. James E. Youngberg
Chapter 21 research of Hardness Indentation measurement impression (ISE) Curves in Ceramics: a brand new method of be certain Plasticity (pages 219–227): Trevor E. Wilantewicz and James W. McCauley

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Additional info for Advances in Ceramic Armor IV: Ceramic Engineering and Science Proceedings, Volume 29, Issue 6

Example text

The impact and penetration resistance of laminated safety glass is given by Huntsberger AS:rood , There exist several destructive test methods to evaluate the overall impact performance of laminated safety glass. ^, However, the most widely used destructive test method for quality control monitoring of laminated safety glass is the destructive 0' Fahrenheit pummel test4. 3 inch) specimens. These specimens are then conditioned at 0" Fahrenheit (-1 8 "C) for at least one hour. 1 mm) of the laminate.

2o0. V. Rudenko, and C. A. Vu, Nonlinear Acoustic Properties of a Rough Surface Contact and Acousto Diagnostics of a Roughness Height Distribution, Acoustic Physics, 40 (4), 593-596. (1994). B. Nagy, Ultrasonic Detection of Kissing Bonds at Adhesive Interfaces, J. of Adhesion Science and Technology,” 5 ( 8 ) 619-630 (1991). 22K. Kendall and D. Tabor, An Ultrasonic Study of the Area of Contact Between Stationary and Sliding Surface, Proc. Roy. , 323 (1554), 321-340 (1971). H. Yew and X. W. Weng, Using Ultrasonic SH Waves to Estimate the Quality of Adhesive Bonds in Plate StrucQres,J.

The equal area interior defects to the surface defects were introduced along the geometric centerline of the spinel target spaced equally from each other. The mass loss of the internal defects corresponds to 4%. The defect closer to the outer edge of the spinel was placed at a distance equal to the surface defect from the outer edge of the target. The projectile impacted the target in the following ways: (a) perpendicular to the center of middle defect; and (b) perpendicular to the target but offset from a defect, midway between two defects.

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Advances in Ceramic Armor IV: Ceramic Engineering and Science Proceedings, Volume 29, Issue 6 by Tatsuki Ohji, Andrew Wereszczak(eds.)


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