Composite materials based on Si3N4 were synthesized by introducing previously prepared beta-Si3N4 seeds into a mixture of alpha-Si3N4 and 10 wt% of sintering additive. The densification process during pressureless sintering was studied in the presence of CeO2 additive, which is less frequently used as sintering aid to Si3N4. The effect of seed concentration and sintering time oil the densification and fracture toughness was followed. The results showed that the addition of seeds retarded densification. On the other hand, fracture toughness passes through maximum at the content of 3 wt% seeds. (c) 2005 Elsevier Ltd and Techna Group S.r.l. All rights reserved
Silicon nitride (Si3N4) based materials are used for engineering applications wear high performance ...
The influence of the sintering additive LiYO(2) (5-15 wt.%) on sintering behavior, microstructure an...
Densification during liquid-phase sintering of Si3N4-TiN was studied in the presence of Y2O3. The co...
Composite materials based on Si3N4 were synthesized by introducing previously prepared beta-Si3N4 se...
The objective of this work was to investigate the effect of two different sintering additives (CeO2 ...
Microstructure development and fracture toughness of Si3N4 composites were studied in the presence o...
This paper deals with densification and alpha - GT p phase transformation Of Si3N4, with a constant ...
Abstract: The objective of this work was to investigate the effect of two different sintering additi...
The Cooperative Research and Development Agreement (CRADA) with Materials and Electrochemical Resear...
Densification, phase transformation and fracture toughness were studied in hot-pressed Si3N4 seeded ...
Si3N4-TiN composites, with varying TiN content from 0-50 wt% and beta-Si3N4 seeds up to 5 wt%, were ...
Abstract Silicon nitride is a ceramic material widely used in various structural applications at hig...
The effect of seeding on the microstructure and mechanical properties of hot-pressed silicon nitride...
Silicon nitride ceramics have been densified with polymer-derived SiAlOC sintering aid. Dense sample...
The type of silicon powder and sintering additive were found to influence the processing and final m...
Silicon nitride (Si3N4) based materials are used for engineering applications wear high performance ...
The influence of the sintering additive LiYO(2) (5-15 wt.%) on sintering behavior, microstructure an...
Densification during liquid-phase sintering of Si3N4-TiN was studied in the presence of Y2O3. The co...
Composite materials based on Si3N4 were synthesized by introducing previously prepared beta-Si3N4 se...
The objective of this work was to investigate the effect of two different sintering additives (CeO2 ...
Microstructure development and fracture toughness of Si3N4 composites were studied in the presence o...
This paper deals with densification and alpha - GT p phase transformation Of Si3N4, with a constant ...
Abstract: The objective of this work was to investigate the effect of two different sintering additi...
The Cooperative Research and Development Agreement (CRADA) with Materials and Electrochemical Resear...
Densification, phase transformation and fracture toughness were studied in hot-pressed Si3N4 seeded ...
Si3N4-TiN composites, with varying TiN content from 0-50 wt% and beta-Si3N4 seeds up to 5 wt%, were ...
Abstract Silicon nitride is a ceramic material widely used in various structural applications at hig...
The effect of seeding on the microstructure and mechanical properties of hot-pressed silicon nitride...
Silicon nitride ceramics have been densified with polymer-derived SiAlOC sintering aid. Dense sample...
The type of silicon powder and sintering additive were found to influence the processing and final m...
Silicon nitride (Si3N4) based materials are used for engineering applications wear high performance ...
The influence of the sintering additive LiYO(2) (5-15 wt.%) on sintering behavior, microstructure an...
Densification during liquid-phase sintering of Si3N4-TiN was studied in the presence of Y2O3. The co...