By Jeffrey J. Swab
This e-book is a set of papers from the yankee Ceramic Society's thirty fifth foreign convention on complicated Ceramics and Composites, held in Daytona seashore, Florida, January 23-28, 2011. This factor contains papers provided within the Armor Ceramics Symposium on themes equivalent to production; High-Rate Real-Time Characterization; Microstructural layout; Nondestructive Characterization; and Phenomenology and Mechanics of Ceramics Subjected to Ballistic effect.
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Extra info for Advances in Ceramic Armor VII: Ceramic Engineering and Science Proceedings
Bradt, The frictional component of the indentation size effect in low load microhardness testing, Journal of Material Research, 8 , 1028-1032 (1993). Advances in Ceramic Armor VII · 25 Advances in Ceramic Armor VII Edited by Jeffrey J. Swab Copyright © 2011 The American Ceramic Society Manufacturing Advances in Ceramic Armor VII Edited by Jeffrey J. Swab Copyright © 2011 The American Ceramic Society TRANSPARENT ARMOR FOR THE NEW STANDARD IN BATTLEFIELD PERFORMANCE Kathie Leighton(l), John Carberry(l), Wiktor Serafm(l), Terranee Avery(2), Douglas Templeton(2) (1) SCHOTT DiamondView Armor Products, LLC, 1515 Garnet Mine Road, Boothwyn PA 19061 (2) TARDEC 6501 E.
CONCLUSIONS An LAS glass-ceramic based transparent armor was developed which is the lightest weight transparent armor recipe to date that is ballistically qualified to the 3a all temperature level of the ATDP 2352. 1 psf). Advances in Ceramic Armor VII · 39 Transparent Armor for the New Standard in Battlefield Performance ACKNOWLEDGEMENTS The authors appreciate the support of TARDEC under CRADA #08-18, the funding from the Technical Support Working Group through EMRTC that supported the environmental test on the full size windows, and the extensive funding and contributions of materials and the transparent armor inventions from DiamondView Armor Products (DAP) and then SCHOTT DiamondView Armor Products which acquired DAP.
It is clear from the results that the ion-exchange process significantly enhanced the mechanical properties of the strengthened glass compared to the virgin glass, most notably the hardness. Due to the importance of hardness as a measure of impact and wear resistance, it can be expected that this glass will yield improved effectiveness over traditional glasses in advanced civilian and military applications. Furthermore, as the proposed utility of chemically glasses lies with their improved ability to resist failure during dynamic impacts, such as high-velocity debris, it is important to recognize the noticeable strain-rate hardening present in Ion-Armor™ glass during dynamic indentation.
Advances in Ceramic Armor VII: Ceramic Engineering and Science Proceedings by Jeffrey J. Swab