By Clive Randall, Hua-Tay Lin, Kunihito Koumoto, Paul Clem, Jonathan Salem, Dongming Zhu
Papers from the yankee Ceramic Society's thirty first overseas convention on complex Ceramics and Composites, held in Daytona seashore, Florida, January 21-26, 2007. issues contain advances in dielectric, piezoelectric and ferroelectric fabrics; electroceramic fabrics for sensors; thermoelectric fabrics for energy conversion purposes; and obvious conductive oxides.Content:
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Extra resources for Advances in Electronic Ceramics: Ceramic Engineering and Science Proceedings, Volume 28, Issue 8
J W I --t open porosity - *-closed porosity - 0 10 20 30 Kynol (~01%) Figure 2. Variation of open and closed porosity in the porous LNKN ceramics as a function of KynoliMfiber content. Advances in Electronic Ceramics . 5Ko,5)o,s,Nb03 Ceramics and Their Piezoelectric Composites Figure 3 . Temperature dependence o f dielectric constant o f the porous LNKN ceramics prepared by using (a) 0, (b) 20 and (c) 30 vol% of Kynol"" fiber. LNKNKNb03 composite Figure 4 presents the microstructure of typical surface and cross section of LNKNIKNb03 coniposite prepared from the porous LNKN ceramics using 30 vol% of KynolTM fiber.
Solid S ~ l Commun. e 134, 559-603 (2005). '% Yasuda, I. M. Sakaguchi, Y. Itoh, H. Ohwa, Y. Yamashita, M. Iwata, and Y. Ishibashi. "Effect of electric fields on donlain structure and dielectric properties of Pb(lnl/~Nb1j2)03-PbTi03 near morphotropic phase boundary," Jpn. J. Appl. fhys. 42,6205-6208 (2003). Advances in Electronic Ceramics . -S. -M. -T. Wang, R. R. -W. ,Ti,O, crystal,” Solid State Commun. 138 (4), 190-193 (2006). -S. T. M. R. Chien, and H. 40) single crystal,” JAppl. Phys. 100 104104/1-5 (2006).
41,6829 (2003). "A. Z. Simoes, M. A. Ramirez, A. Ries, J. A. Varela, E. Longo, R. Ramesh, Appl. Phys. , 88, 072916 (2006). 13 J. S. Lee, H. H. Kim, H. J. Kwon and Y. W. Jeong, Appl. Phys. , 73, 166 (1998). Advances in Electronic Ceramics . , Ltd. 2808 Iwasaki, Komaki, Aichi 485-8510, Japan ABSTRACT LiodJ% 5 K o 5 ) o 94Nb03 (LNKN) pre-ceramic powder and phenol resin (KynolTM)fiber was mixed for fabrication of porous LNKN ceramics with different pore volumes. The porous LNKN ceramics were then converted to LNKNiKNb03 composites through soaking and heattreatment by using a sol-gel precursor source of KNb03 composition.