The preparation of homogeneously dense fibre reinforced SiC composites in a rapid way was the main objective of this study. Furthermore, densification should proceed as fast as possible. In Part 1 of this study,1 some theoretical concepts were proposed of the infiltration mechanisms. The simple model was verified qualitatively using the results of experiments as is reported in this manuscript. Model and experiments do generally coincide. The trends predicted and found experimentally during alteration of the process or microstructural conditions appear to justify the theoretical concepts. Optimum infiltration conditions to gain largest density gain in the shortest time frame are 1320 K, outlet pressure of 6.65 kPa, total gas flow rate of 4 ×...
All three classes of fibre reinforced composite materials (polymer, metal and ceramic matrix) may be...
Silicon carbide fiber-reinforced silicon carbide matrix composites (SiCf/SiC) have been produced usi...
In this work the preparation of ceramic matrix composites with improved mechanical properties and re...
The preparation of homogeneously dense fibre reinforced SiC composites in a rapid way was the main o...
This paper describes the densification of 3D carbon (continuous) fibrous preforms with a SiC matrix ...
In this paper the densification of a cylindrical pore due to a first order heterogeneous deposition ...
Silicon carbide fiber/silicon carbide matrix (SiC-SiC) composites exhibit remarkable material proper...
In this paper the densification of a cylindrical pore due to a first order heterogeneous deposition ...
Fabrication of silicon carbide fibres reinforced silicon carbide composite (SiC/SiC) by chemical vap...
Silicon carbide continuous fiber reinforced composites are prepared by Forced flow thermal gradient ...
Fabrication of silicon carbide fibres reinforced silicon carbide composite (SiC/SiC) by chemical vap...
The kinetics of a SiC chemical vapour deposition and infiltration process were studied. SiH4 and C2H...
Chemical vapor infiltration (CVI) is simply chemical vapor deposition (CVD) on the internal surfaces...
The chemical infiltration in the vapour phase (CVI) technique is used to densify porous preforms mad...
All three classes of fibre reinforced composite materials (polymer, metal and ceramic matrix) may be...
Silicon carbide fiber-reinforced silicon carbide matrix composites (SiCf/SiC) have been produced usi...
In this work the preparation of ceramic matrix composites with improved mechanical properties and re...
The preparation of homogeneously dense fibre reinforced SiC composites in a rapid way was the main o...
This paper describes the densification of 3D carbon (continuous) fibrous preforms with a SiC matrix ...
In this paper the densification of a cylindrical pore due to a first order heterogeneous deposition ...
Silicon carbide fiber/silicon carbide matrix (SiC-SiC) composites exhibit remarkable material proper...
In this paper the densification of a cylindrical pore due to a first order heterogeneous deposition ...
Fabrication of silicon carbide fibres reinforced silicon carbide composite (SiC/SiC) by chemical vap...
Silicon carbide continuous fiber reinforced composites are prepared by Forced flow thermal gradient ...
Fabrication of silicon carbide fibres reinforced silicon carbide composite (SiC/SiC) by chemical vap...
The kinetics of a SiC chemical vapour deposition and infiltration process were studied. SiH4 and C2H...
Chemical vapor infiltration (CVI) is simply chemical vapor deposition (CVD) on the internal surfaces...
The chemical infiltration in the vapour phase (CVI) technique is used to densify porous preforms mad...
All three classes of fibre reinforced composite materials (polymer, metal and ceramic matrix) may be...
Silicon carbide fiber-reinforced silicon carbide matrix composites (SiCf/SiC) have been produced usi...
In this work the preparation of ceramic matrix composites with improved mechanical properties and re...