Effect of microstructure and chemical composition on subcritical crack growth in SiC-based fiber tows
Langue
EN
Article de revue
Ce document a été publié dans
Ceramics International. 2020-09-01, vol. 47, n° 2, p. 2888-2891
Résumé en anglais
SiC-based fibers, a key component for the reinforcement of thermostructural ceramic matrix composites, are subjected to subcritical crack growth (SCG) causing their delayed failure. Stress exponents <10 were reported for ...Lire la suite >
SiC-based fibers, a key component for the reinforcement of thermostructural ceramic matrix composites, are subjected to subcritical crack growth (SCG) causing their delayed failure. Stress exponents <10 were reported for various fiber types, standing out from other types of ceramic or glass. The continuum of silicon oxycarbide (SiCO) and carbon free phases is suspected to govern the environmentally assisted crack growth phenomenon, highlighted by relationships between SCG parameters and oxygen or carbon free contents. Metallic heteroelements (Ti or Zr, found in Tyranno® fibers) play a critical role on this sensitivity as well. The existence of 2 distinct groups of fiber types, possibly associated to different SCG mechanisms, is discussed.< Réduire
Mots clés en anglais
SiC fiber
Slow crack growth
Static fatigue
Lifetime prediction parameter
Unités de recherche