By Swab, Sujanto Widjaja, Dileep Singh
This e-book is a set of papers from the yankee Ceramic Society's thirty fifth foreign convention on complex Ceramics and Composites, held in Daytona seashore, Florida, January 23-28, 2011. This factor contains papers provided within the Armor Ceramics Symposium on subject matters akin to production; High-Rate Real-Time Characterization; Microstructural layout; Nondestructive Characterization; and Phenomenology and Mechanics of Ceramics Subjected to Ballistic Impact.
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Extra resources for Advances in Ceramic Armor VII: Ceramic Engineering and Science Proceedings, Volume 32
G. Peters and F. Knoop, Resistance of Glass to Indentation, Glass Industry, 20, 174-176 (1939). 13 L. Sidjanin, D. Rajnovic, J. Ranogajec, E. Molnar, Measurement of Vickers hardness on ceramic floor tiles, Journal of the European Ceramic Society, 27, 1767-1773 (2007). K. Mukhopadhyay, Analysis of microhardness data using the normalized power law equation and energy balance model, Journal of Materials Science, 40, 241-244 (2005). 15 H. Li, A. H. C. Bradt, The frictional component of the indentation size effect in low load microhardness testing, Journal of Material Research, 8 , 1028-1032 (1993).
EXPERIMENTAL PROCEDURE The initial work involved developing and optimizing the equipment and techniques essential to the operation of a practical measurement system. In other words, a methodology had to be developed to obtain consistent results from measurement to measurement. In particular, drilling a clean hole with no cracks or chipping needed to be achieved in order to obtain accurate strain measurements. The details of this effort will be outlined next. Four squared/rectangular plate specimens with different thickness were received for this study.
Consequently, it can be expected that Vickers hardness will show increased sensitivity to load when impacted at high strain rates and on strengthened faces. Figure 3. Static and dynamic Vickers indentation diagonal measurements for various indentation loads on strengthened and virgin glass bars. The data reveals increased Meyer's exponent under dynamic loading for both strengthened and virgin glass surfaces compared to static loading. 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.
Advances in Ceramic Armor VII: Ceramic Engineering and Science Proceedings, Volume 32 by Swab, Sujanto Widjaja, Dileep Singh