Synergism of Toughening Mechanisms in Whisker‐Reinforced Ceramic‐Matrix Composites
- 1 January 1991
- journal article
- Published by Wiley in Journal of the American Ceramic Society
- Vol. 74 (1) , 194-202
- https://doi.org/10.1111/j.1151-2916.1991.tb07317.x
Abstract
The improved fracture resistance of whisker‐reinforced ceramic‐matrix composites involves more than one energy‐absorbing mechanism. The possible mechanisms are reviewed and a micromechanical model evaluating the relative contributions to the overall toughness is presented. The mechanisms involve microcracking, load transfer, bridging, and crack deflection. The synergism of these mechanisms is examined using an energy release rate balance equation. The basic assumption of the proposed model is that the load transfer between the matrix and the whiskers is due to Coulomb friction. The model has been applied to an Al2O3/SiC whisker composite and shows reasonable agreement with reported experimental results. The role of the thermal residual stresses is also examined in light of the frictional load transfer assumption.Keywords
This publication has 26 references indexed in Scilit:
- Temperature Dependence of Strengthening by Whisker Reinforcement: SiC Whisker-Reinforced Alumina in AirAdvanced Ceramic Materials, 1988
- Strain and Fracture in Whisker Reinforced Ceramics [1]MRS Proceedings, 1986
- Tensile mechanical properties of SiC whiskersJournal of Materials Science, 1985
- Growth of beta-silicon carbide whiskers by the VLS processJournal of Materials Science, 1985
- Ceramic Matrix Composite Toughening Mechanisms: An UpdatePublished by Wiley ,1985
- Toughening Behavior in Sic‐Whisker‐Reinforced AluminaJournal of the American Ceramic Society, 1984
- Silicon carbide fibre reinforced glass-ceramic matrix composites exhibiting high strength and toughnessJournal of Materials Science, 1982
- Mechanisms of Toughening in Ceramic Matrix CompositesCeramic Engineering and Science Proceedings, 1981
- Solutions for effective shear properties in three phase sphere and cylinder modelsJournal of the Mechanics and Physics of Solids, 1979
- Effective Stiffness of Randomly Oriented Fibre CompositesJournal of Composite Materials, 1972