
handle: 11441/28202
Este trabajo está orientado a determinar las condiciones de tensión y temperatura para las cuales ocurre la nucleación y coalescencia de cavidades en dos materiales cerámicos a base de nitruro de silicio sinterizados bajo presión de gas. En particular, se indica que, aunque ambos materiales muestran significativos niveles de deformación estacionaria a tensiones menores que 90 MPa, a tensiones mayores las cavidades nuclean y coalescen, dando lugar a fluencia terciaria. Las observaciones microestructurales por microscopia electrónica de barrido sugieren que la cavitación está asociada al movimiento viscoso de la fase secundaria.
This work is oriented to put forth the stress and temperature conditions for the nucleation and coalescence of cavities in two gas pressure-sintered silicon nitride-based ceramic materials. Particularly, it is indicated that, even though both materials show significant steady-state strain levels at stresses lower than 90 MPa, cavities nucleate and coalesce at higher stresses, thus giving rise to tertiary creep. The microstructural observations by SEM suggest that cavitation is associated to the viscous movement of the secondary phase.
Silicon nitride, Ceramics, Cerámicas, Fluencia, Microstructural evolution, Clay industries. Ceramics. Glass, microstructural evolution, Nitruro de silicio, Creep, Cerámicos, creep, nitruro de silicio, TP785-869, silicon nitride, evolución microestructural, Evolución microestructural, fluencia
Silicon nitride, Ceramics, Cerámicas, Fluencia, Microstructural evolution, Clay industries. Ceramics. Glass, microstructural evolution, Nitruro de silicio, Creep, Cerámicos, creep, nitruro de silicio, TP785-869, silicon nitride, evolución microestructural, Evolución microestructural, fluencia
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