Advances in Ceramic Armor, Bioceramics, and Porous by Jerry C. LaSalvia, Roger Narayan, Paolo Colombo, Manabu PDF

By Jerry C. LaSalvia, Roger Narayan, Paolo Colombo, Manabu Fukushima, Andrew Gyekenyesi

ISBN-10: 1119320232

ISBN-13: 9781119320234

ISBN-10: 1119320240

ISBN-13: 9781119320241

A selection of 17 papers from thee renowned symposia - Symposium four: Armor Ceramics; Symposium five: subsequent new release Bioceramics and Biocomposites; and Symposium nine: Porous Ceramics: Novel advancements and functions held throughout the American Ceramic Society’s fortieth foreign convention on complicated Ceramics and Composites, held in Daytona seashore, Florida, January 24-29, 2016.

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Additional info for Advances in Ceramic Armor, Bioceramics, and Porous Materials: Ceramic Engineering and Science Proceedings Volume 37, Issue 4

Example text

J. Am. Ceram. , 70 [1] 15-22 (1987). 27. , 48 [18-19] 4493-99 (2000). 28. , Crit. Rev. Solid State Mat. , 32 67-109 (2007). 29. , in The Physics and Chemistry of Carbides, Nitrides and Borides, Vol. 185 NATO ASI Series (ed R. Freer) Ch. 16, 249-267 (Springer Netherlands, 1990). 30. , Patent 7309672 B2, 2005. 31. P. , AFRL-SR-AR-TR-08-0531, 16 pp. (2008). 32. , Sintering Theory and Practice, Wiley-VCH, 1996, 568 pp. 33. , Ceram. , 36 [1] 167-71 (2010). 34. , Adv. Sci. , 63 79-84 (2010). O. Box 45, Rijswijk, The Netherlands ABSTRACT Confinement enables ballistic testing on small sized ceramic samples.

15 1337-1339 (1996). 25. , Jr. , J Mat. Sci. Lett. 19, 237-239, (2000). 26. , J. Am. Ceram. , 70 [1] 15-22 (1987). 27. , 48 [18-19] 4493-99 (2000). 28. , Crit. Rev. Solid State Mat. , 32 67-109 (2007). 29. , in The Physics and Chemistry of Carbides, Nitrides and Borides, Vol. 185 NATO ASI Series (ed R. Freer) Ch. 16, 249-267 (Springer Netherlands, 1990). 30. , Patent 7309672 B2, 2005. 31. P. , AFRL-SR-AR-TR-08-0531, 16 pp. (2008). 32. , Sintering Theory and Practice, Wiley-VCH, 1996, 568 pp. 33.

5 MPa. With Al2O3, densities > 99% TD were obtained between 1900°C - 2000oC. Densities increased linearly with temperature between 1700oC - 1900oC and 1800oC - 2000oC for B4C powders with and without Al2O3, respectively. Densification behavior was monitored during hotpressing by measuring the hot-press ram displacement using an LVDT. During the temperature ramp, Al2O3 had a negligible effect on the densification onset temperature, but increased the average densification rate by 83% in the rapid densification regime.

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Advances in Ceramic Armor, Bioceramics, and Porous Materials: Ceramic Engineering and Science Proceedings Volume 37, Issue 4 by Jerry C. LaSalvia, Roger Narayan, Paolo Colombo, Manabu Fukushima, Andrew Gyekenyesi


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