Hua-Tay Lin, Andrew Gyekenyesi, Linan An, Sanjay Mathur,'s Advanced Materials for Sustainable Developments: Ceramic PDF

By Hua-Tay Lin, Andrew Gyekenyesi, Linan An, Sanjay Mathur, Tatsuki Ohji

ISBN-10: 0470594748

ISBN-13: 9780470594742

ISBN-10: 0470944080

ISBN-13: 9780470944080

Contributions from 3 symposia that have been a part of the thirty fourth overseas convention on complicated Ceramics and Composites (ICACC), in Daytona Beach, FL, January 24-29, 2010 are awarded during this quantity. The large diversity of themes is captured by way of the symposia titles, that are indexed as follows: overseas Symposium on Ceramics for electrical power new release, garage, and Distribution (debuted in 2010); Thermal administration fabrics and applied sciences (debuted in 2010); and finally, and complex Sensor expertise, advancements and purposes (debuted in 2010). those new symposia emerged in this ICACC assembly as a result of neighborhood development and curiosity, and therefore each one of those topic components have been confirmed as stand-alone symposia. 

 

the present quantity represents 15 contributions from the above indexed symposia that embrace the newest advancements in engineering ceramics for power applied sciences, thermal administration using both hugely conductive or insulating fabrics, in addition to advances concerning the usage of ceramics for sensors.  

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Additional info for Advanced Materials for Sustainable Developments: Ceramic Engineering and Science Proceedings, Volume 31

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Varela-Feria, Physics of the Solid State 48 (2), pp. 229-232 2006 M. Uehara, R. Shiraishi, A. Nogami, N. Enomoto, J. Hojo, S1C-B4C composites for synergistic enhancement of thermoelectric property, Journal of the European Ceramic Society 24 (2), pp. 409-412 (2004) 4 K. Koumoto, M. Shimohigoshi, S. Takeda, H. Yanagida, Thermoelectric energy conversion by porous SiC ceramics, Journal of Materials Science Letters 6 (12), pp. 1453-1455 (1987) 5 M. Masuda, H. Mabuchi, H. Tsuda, T. Matsui, K. Morii, Thermoelectric Properties of 3C-SÌC Produced by Silicon Carbonization, Materials Science Forum 389-393 (1), pp.

M. Rowe, CRC Handbook of Thermoelectrics, CRC Press LLC, Boca Raton, FL, 1995. \ . Terasaki, Y. Sasago and K. Uchinokura, Large thermoelectric power in NaCo2Û4 single crystals, Phys. Rev. B, 56, R12685-R12687 (1997). J. S. Toberer, Complex thermoelectric materials, Nature Materials, 7, 105-14 (2008). 6 A. Masset, C. Michel, A. Maignan, and M. Hervieu, Misfit-layered cobaltite with an anisotropie giant magnetoresistance: Ca 3 Co 4 0 9 , Phys. Rev. B, 62, 166-75 (2000). 7 H. Itahara and T. Tani, Highly-Textured Thermoelctric Oxide Polycrystals Synthesized by ReactiveTemplated Grain Growth (RTGG) Method, R&D Review of Toyota CRDL, 39, 63-70 (2004).

Hojo, S1C-B4C composites for synergistic enhancement of thermoelectric property, Journal of the European Ceramic Society 24 (2), pp. 409-412 (2004) 4 K. Koumoto, M. Shimohigoshi, S. Takeda, H. Yanagida, Thermoelectric energy conversion by porous SiC ceramics, Journal of Materials Science Letters 6 (12), pp. 1453-1455 (1987) 5 M. Masuda, H. Mabuchi, H. Tsuda, T. Matsui, K. Morii, Thermoelectric Properties of 3C-SÌC Produced by Silicon Carbonization, Materials Science Forum 389-393 (1), pp. 763-766 (2002) G D.

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Advanced Materials for Sustainable Developments: Ceramic Engineering and Science Proceedings, Volume 31 by Hua-Tay Lin, Andrew Gyekenyesi, Linan An, Sanjay Mathur, Tatsuki Ohji


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