The polymer-derived SiC fibers are mainly used as reinforcing materials for ceramic matrix composites (CMCs) because of their excellent mechanical properties at high temperature. However, decomposition reactions such as release of SiO and CO gases and the formation of pores proceed above 1400 °C because of impurities introduced during the curing process. In this study, polycrystalline SiC fibers were fabricated by applying iodine-curing method and using controlled pyrolysis conditions to investigate crystallization and densification behavior. Oxygen and iodine impurities in amorphous SiC fibers were reduced without pores by diffusion and release to the fiber surface depending on the pyrolysis time. In addition, the reduction of the impurity...
Fiber properties govern critical mechanical properties of ceramic matrix composites (CMCs). Oxidatio...
In this study, nanoscale composite SiC-ZrC ceramic fibres, derived from polyzirconocenecarbosilane (...
International audienceOxygen impurity in SiC nanopowders induces grain growth and porous structure b...
The polymer-derived SiC fibers are mainly used as reinforcing materials for ceramic matrix composite...
Polymer-derived SiC-polycrystalline fibers show excellent heat-resistance up to 2000 °C, and rel...
The effects of oxygen pick-up and sintering additives on the formation of silicon carbide (SiC) fibe...
The current, commercial, organosilicon polymer derived, silicon carbide (SiC) based fibers, e.g. Nic...
Polymer Infiltration and Pyrolysis (PIP) is one of the most attractive fabrication processes for sil...
Curing treatment is essential for ceramic precursors to maintain their shape during pyrolysis. In th...
For most thermostructural applications, fragility of ceramics is a major disadvantage, so fiber-rein...
Abstract Silicon carbide (SiC) fiber has recently received considerable attention as promising next-...
The wider adoption of SiC-based ceramic matrix composites (CMCs) for thermo-structural applications ...
Polymer impregnation and pyrolysis (PIP) is one of the most attractive fabrication processes for sil...
High-performance ceramics are often used for reusable spacecraft Thermal Protection Systems (TPS). P...
Silicon carbide fibers have high strength and high modulus and they are provided with flexible, mult...
Fiber properties govern critical mechanical properties of ceramic matrix composites (CMCs). Oxidatio...
In this study, nanoscale composite SiC-ZrC ceramic fibres, derived from polyzirconocenecarbosilane (...
International audienceOxygen impurity in SiC nanopowders induces grain growth and porous structure b...
The polymer-derived SiC fibers are mainly used as reinforcing materials for ceramic matrix composite...
Polymer-derived SiC-polycrystalline fibers show excellent heat-resistance up to 2000 °C, and rel...
The effects of oxygen pick-up and sintering additives on the formation of silicon carbide (SiC) fibe...
The current, commercial, organosilicon polymer derived, silicon carbide (SiC) based fibers, e.g. Nic...
Polymer Infiltration and Pyrolysis (PIP) is one of the most attractive fabrication processes for sil...
Curing treatment is essential for ceramic precursors to maintain their shape during pyrolysis. In th...
For most thermostructural applications, fragility of ceramics is a major disadvantage, so fiber-rein...
Abstract Silicon carbide (SiC) fiber has recently received considerable attention as promising next-...
The wider adoption of SiC-based ceramic matrix composites (CMCs) for thermo-structural applications ...
Polymer impregnation and pyrolysis (PIP) is one of the most attractive fabrication processes for sil...
High-performance ceramics are often used for reusable spacecraft Thermal Protection Systems (TPS). P...
Silicon carbide fibers have high strength and high modulus and they are provided with flexible, mult...
Fiber properties govern critical mechanical properties of ceramic matrix composites (CMCs). Oxidatio...
In this study, nanoscale composite SiC-ZrC ceramic fibres, derived from polyzirconocenecarbosilane (...
International audienceOxygen impurity in SiC nanopowders induces grain growth and porous structure b...