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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…mehr

Produktbeschreibung
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.