Effective activation energy for densification of SiC in the presence of C and B4C additives is determined by constant heating rate experiments through analysis of shrinkage in hot pressing. The activation energy (AE) for sintering increased linearly with the relative density (RD) in two different regimes. The effective AE increased from 407 +/- 50 kJ/mole at 75 pct RD to 1132 +/- 75 kJ/mole at 95 pct RD. Lattice diffusion is proposed as the predominant mechanism for SiC densification at higher density. This is also validated by the uniform distribution of sintering additive through electron probe microanalysis. The low AE in the regime of lower density could be attributed to the pressure-assisted particle rearrangement during hot pressing. ...
The feasibility of flash sintering a covalent ceramic, SiC, has been investigated for the first time...
The densification and phase formation of liquid phase sintered silicon carbide (LPSSiC) with 10wt.% ...
Silicon carbide is a highly covalent ceramic, so additives like carbon and boron must be present in ...
Effective activation energy for densification of SiC in the presence of C and B4C additives is deter...
Nanostructured ceramics offer significant improvements in properties over the corresponding material...
Silicon carbide has been extensively used in structural applications, especially at high temperature...
Graduation date: 2008Nanostructured ceramics offer significant improvements in properties over the \...
AbstractSilicon carbide possesses exceptional mechanical and thermal properties, but its densificati...
The high temperature properties of sintered silicon carbide are critically dependent on additives wh...
Plasma pressure compaction (P2C) is a novel sintering technique that enables the consolidation of si...
Sintering of silicon carbide (SiC) requires high temperature and pressure due to the covalent nature...
Silicon carbide (SiC) is an important material in industry due to its favorable mechanical, thermal,...
International audienceOxygen impurity in SiC nanopowders induces grain growth and porous structure b...
International audienceThe identification of densification mechanism during hot uniaxial pressing is ...
Highly pure free of additives fully dense SiC ceramics (>99 % theoretical density) were manufactured...
The feasibility of flash sintering a covalent ceramic, SiC, has been investigated for the first time...
The densification and phase formation of liquid phase sintered silicon carbide (LPSSiC) with 10wt.% ...
Silicon carbide is a highly covalent ceramic, so additives like carbon and boron must be present in ...
Effective activation energy for densification of SiC in the presence of C and B4C additives is deter...
Nanostructured ceramics offer significant improvements in properties over the corresponding material...
Silicon carbide has been extensively used in structural applications, especially at high temperature...
Graduation date: 2008Nanostructured ceramics offer significant improvements in properties over the \...
AbstractSilicon carbide possesses exceptional mechanical and thermal properties, but its densificati...
The high temperature properties of sintered silicon carbide are critically dependent on additives wh...
Plasma pressure compaction (P2C) is a novel sintering technique that enables the consolidation of si...
Sintering of silicon carbide (SiC) requires high temperature and pressure due to the covalent nature...
Silicon carbide (SiC) is an important material in industry due to its favorable mechanical, thermal,...
International audienceOxygen impurity in SiC nanopowders induces grain growth and porous structure b...
International audienceThe identification of densification mechanism during hot uniaxial pressing is ...
Highly pure free of additives fully dense SiC ceramics (>99 % theoretical density) were manufactured...
The feasibility of flash sintering a covalent ceramic, SiC, has been investigated for the first time...
The densification and phase formation of liquid phase sintered silicon carbide (LPSSiC) with 10wt.% ...
Silicon carbide is a highly covalent ceramic, so additives like carbon and boron must be present in ...