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Fracture Mechanics of Ceramics: Composites, R-Curve Behavior, and Fatigue: v. 9 - Hardcover

 
9780306442025: Fracture Mechanics of Ceramics: Composites, R-Curve Behavior, and Fatigue: v. 9

Inhaltsangabe

Fracture Mechanics and Mechanism of Ceramic Composites; T. Kishi. Effects of Residual Stress and Frictional Sliding on RCurve Behavior in FiberReinforced Ceramics; K. Sekine, Y. Kagawa. A Crack Growth Resistance Model for FiberReinforced Ceramic Materials; L. Zhou, et al. On the Size Effect in Fracture of CeramicCeramic Composite Materials; J. Llorca, M. Elices. Matrix Cracking and Fiber Bridging of Carbon Reinforced Carbon Matrix Composites; M. Sakai, T. Miyajima. Fiber Pullout and Fracture Energy of CFiber/CMatrix Composites; T. Miyajime, M. Sakai. The Crack Growth Resistance of SiCSiC Ceramic Composite Materials; M. Gomina, M.H. Rouillon. Fracture Toughness of Carbon Fiber Reinforced Ceramic Composites; K. Nakano, et al. RCurve Behavior of Ceramics; R.W. Steinbrech. Crack Face Bridging in Monolithic Spinel; J.C. Hay, K.W. White. 32 additional articles. Index.

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Reseña del editor

Volumes 9 and 10 (see following entry) comprise the proceedings of an international symposium on the fracture mechanics of ceramic materials held in Nagoya, Japan, July 1991. Scientists address many of the theoretical and practical issues of brittle fractures and explore recent developments in monol

Biografía del autor

M. Sakai is at the University of Hawaii.

M. Sakai is at the University of Hawaii.

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