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Engineering Ceramics: Multifunctional Properties
Subtitle:
New Perspectives
Description:
Volume is indexed by Thomson Reuters CPCI-S (WoS).
This work represents a new approach to ceramics research. The mechanical properties of ceramics and ceramic-based composites are well understood and have been studied extensively in the past. This more profound understanding of physical properties, such as particularly low or high thermal conductivities, radiation penetration depth, electrical and magnetic responses etc., can now lead to the development of new materials having improved properties.
This work represents a new approach to ceramics research. The mechanical properties of ceramics and ceramic-based composites are well understood and have been studied extensively in the past. This more profound understanding of physical properties, such as particularly low or high thermal conductivities, radiation penetration depth, electrical and magnetic responses etc., can now lead to the development of new materials having improved properties.
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Info:
eBook:
ToC:
Editors:
P. Sajgalík and Z. Lencés
THEMA:
TGM
BISAC:
TEC021000
Keywords:
Aluminum (Al), Ceramic Composite, Composite, Creep, Creep Resistance, Crystallization, Fracture Toughness, Functionally Graded Material (FGM), Grain Boundary, Microstructure, Nanocomposite, Oxidation, Oxide, Property Analysis, Raman Spectroscopy, R-Curve, Residual Stress, Silicon Carbide (SiC), Titanium Nitride, Wear
Details:
Proceedings of the Advanced Research Workshop on Engineering Ceramics, held at Smolenice Castle, Slovakia, May 11-15, 1999
Pages:
364
Year:
2000
ISBN-13:
9780878498468
ISBN-13 (CD):
9783038596974
ISBN-13 (eBook):
9783035703825
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