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SiC-IrSi3 for High Oxidation Resistance
Antonio Camarano1, Donatella Giuranno2, Javier Narciso1,3
1Instituto Universitario de Materiales de Alicante (IUMA), Universidad de Alicante, Apdo. 99, 03080 Alicante, Spain.
Silicon carbide (SiC) composites with iridium silicide (IrSi3) show improved mechanical properties and oxidation resistance. This novel material, produced via cost-effective reactive infiltration, offers a promising alternative to traditional SiC production methods.
Area of Science:
- Materials Science
- Ceramic Engineering
- Composite Materials
Background:
- Silicon carbide (SiC) possesses desirable thermal and mechanical properties but is expensive to produce.
- Traditional SiC production via sintering is costly.
- Reactive infiltration offers a lower-cost alternative for SiC production.
Purpose of the Study:
- To investigate the potential of replacing residual silicon in SiC with silicides.
- To evaluate the mechanical properties of SiC-IrSi3 composites.
- To assess the compatibility and oxidation resistance of SiC-IrSi3 composites.
Main Methods:
- Fabrication of SiC-C preforms.
- Reactive infiltration using Ir-Si alloys.
- Thermomechanical analysis.
- Oxidation resistance testing.
Main Results:
- SiC-IrSi3 composite material exhibited good mechanical properties.
- High compatibility was observed between iridium silicide (IrSi3) and SiC.
- The presence of IrSi3 significantly enhanced oxidation resistance compared to SiC-Si composites.
Conclusions:
- Reactive infiltration of SiC-C preforms with Ir-Si alloys is a viable method for producing SiC-IrSi3 composites.
- The SiC-IrSi3 composite demonstrates superior mechanical and oxidation resistance properties.
- This material offers a promising, cost-effective alternative for applications requiring high-performance SiC.
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