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The Armor Ceramics Symposium was once held January 25-27, 2010 in
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Extra resources for Advances in Ceramic Armor VI: Ceramic Engineering and Science Proceedings, Volume 31, Issue 5
The authors would like to thank Peter Wikingsson from Superior Graphite for the provision of the graphite spheres used for the introduction of inclusions into the ceramic tiles. The authors would like also to acknowledge the contribution and support of Evisive Inc to the microwave testing of the ceramic tiles. REFERENCES 'R. Brennan, R. A. Haber, D. Niesz, J. McCauley and M. Bhardwaj, Non-Destructive Evaluation (NDE) of Ceramic Armour: Fundamentals, Ceramic Engineering and Science Proceedings, 223-230, (2005).
Mason and H. McSkimin, Attenuation and Scattering of High Frequency Sound Waves in Metals and Glasses, The Journal of the Acoustical Societyof America, 19(3), 464-473 (1947). 12 D. Nicoletti, N. Bilgutay, B. Onaral, Ultrasonics SymposiumProceedings,1119-1122 (1990). 44 · Advances in Ceramic Armor VI Advanced Nondestructive Ultrasound Characterization of Transparent Spinel L. Luo and J. Molnar, Ultrasound absorption and entropy production in biological tissue: a novel approach to anticancer therapy, Diagnostic Pathology, 1(35), (2006).
Table 1 contains statistical information on the A, B, C, and R2 values for each curve. 94. Analyzing changes in the Gaussian coefficients provides insight into changes in the microstructural homogeneity between different regions of the material. Regions 1 and 2 show a significantly higher A coefficient relative to Region 3, which is used as a baseline for the average microstructure. This indicates that the concentration of heterogeneities such as precipitates is increased in these regions. The B coefficient for Region 1 has been shifted towards higher frequencies, indicating that the mean size of heterogeneities is likely smaller compared with the average microstructure.