The densification and phase formation of liquid phase sintered silicon carbide (LPSSiC) with 10wt.% additives were investigated. The ratio of the Al(sub 2)O(sub 3)/Y(sub 2)O(sub 3)-additives was changed between 4:1 and 1:2. Densification was carried out by hot pressing and gas pressure sintering. The different densification routes result in different major grain boundary phases-aluminates in gas pressure sintered materials and silicates in hot pressed samples. Thermodynamic calculations were carried out to determine the amount of liquid phase during densification and for the interpretation of the results
Silicon carbide is an important structural ceramic and finds applications as abrasives, as a refract...
International audienceThe complexity of gas pressure liquid phase sintering (GPS-LPS) of silicon nit...
During the sintering of porous liquid phase sintered silicon carbide (porous LPS-SiC) a strong inter...
Liquid-Phase Sintered Silicon Carbide (LPSSiC) materials were produced with different Y203:Al203 sin...
In the present dissertation the formation of microstructure, the kinetics of densification and the f...
Two-step sintering route was applied for the densification SiC by promoting the role of liquid phase...
Silicon carbide has been extensively used in structural applications, especially at high temperature...
In this work, the influence of the additive system on the liquid phase sintering of silicon carbide ...
Microstructure development and phase formation processes during sintering of silicon carbide based m...
The structure and phase formation of porous liquid phase sintered silicon carbide (porous LPS-SiC), ...
As a preliminary investigation of process development for SiC fiber-reinforced SiC matrix composites...
The densification behaviour of LPSSiC ceramics with different amount of secondary phases was investi...
The structure and phase formation of porous liquid phase sintered silicon carbide (porous LPS-SiC), ...
Porous silicon carbide (SiC) is a promising ceramic for high-temperature applications due to its uni...
Effective activation energy for densification of SiC in the presence of C and B4C additives is deter...
Silicon carbide is an important structural ceramic and finds applications as abrasives, as a refract...
International audienceThe complexity of gas pressure liquid phase sintering (GPS-LPS) of silicon nit...
During the sintering of porous liquid phase sintered silicon carbide (porous LPS-SiC) a strong inter...
Liquid-Phase Sintered Silicon Carbide (LPSSiC) materials were produced with different Y203:Al203 sin...
In the present dissertation the formation of microstructure, the kinetics of densification and the f...
Two-step sintering route was applied for the densification SiC by promoting the role of liquid phase...
Silicon carbide has been extensively used in structural applications, especially at high temperature...
In this work, the influence of the additive system on the liquid phase sintering of silicon carbide ...
Microstructure development and phase formation processes during sintering of silicon carbide based m...
The structure and phase formation of porous liquid phase sintered silicon carbide (porous LPS-SiC), ...
As a preliminary investigation of process development for SiC fiber-reinforced SiC matrix composites...
The densification behaviour of LPSSiC ceramics with different amount of secondary phases was investi...
The structure and phase formation of porous liquid phase sintered silicon carbide (porous LPS-SiC), ...
Porous silicon carbide (SiC) is a promising ceramic for high-temperature applications due to its uni...
Effective activation energy for densification of SiC in the presence of C and B4C additives is deter...
Silicon carbide is an important structural ceramic and finds applications as abrasives, as a refract...
International audienceThe complexity of gas pressure liquid phase sintering (GPS-LPS) of silicon nit...
During the sintering of porous liquid phase sintered silicon carbide (porous LPS-SiC) a strong inter...