Abstract
Silicon carbide nanowires (SiCnw), owing to their single-crystal structure and good intrinsic mechanical and thermal properties, are considered promising reinforcement phase for SiC matrix composites. However, current approaches for integrating SiCnw with SiC matrix composites—such as mixing with powders or precursors—often result in limited volume fractions, reduced nanowire integrity, and non-uniform dispersions. In this study, fabrication method involving the preformation of three-dimensional SiCnw network, followed by liquid-phase-assisted interface control and precursor infiltration and pyrolysis, was investigated. The influence of interfacial bonding on the densification, mechanical behavior, and thermal conductivity of resulting SiCnw/SiC composites was examined. Fracture morphology and toughening mechanisms associated with SiCnw were analyzed. The results provide insights into structural role of SiCnw in SiC composites and suggest potential directions for further optimization of microstructure–property relationships.
| Original language | English |
|---|---|
| Pages (from-to) | 42201-42210 |
| Number of pages | 10 |
| Journal | Ceramics International |
| Volume | 51 |
| Issue number | 24 |
| DOIs | |
| State | Published - Oct 2025 |
Keywords
- Liquid phase
- Mechanical properties
- SiC nanowires
- SiC/SiC composites
- Thermal properties
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