Effect of solid solution formation on densification of spark plasma sintered ZrC ceramics with TiC as sintering aid
Bo Niu, F. Zhang, Wei Ji, J. Y. Zhang, Zhengyi Fu, W. M. Wang
Abstract
Bo Niu, F. Zhang, Wei Ji, J. Y. Zhang, Zhengyi Fu, W. M. Wang
Abstract
The densification of ZrC ceramics doped with different contents of TiC prepared by spark plasma sintering at the temperatures between 1750 and 1850°C has been investigated. The microstructure and mechanical properties of the ceramics have been characterised. It was shown that TiC additions effectively promoted the densification process by forming (Zr,Ti)C solid solution. The relative densities and mechanical properties of ZrC samples increased with the increasing of TiC content or the sintering temperature. Ceramic with the content of TiC up to 10 vol.-% sintering at 1850°C showed an excellent combination of properties including a relative density of 98.7%, hardness of 20.8 GPa and flexural strength of 605 MPa.
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The densification of ZrC ceramics doped with different contents of TiC prepared by spark plasma sintering at the temperatures between 1750 and 1850°C has been investigated. The microstructure and mechanical properties of the ceramics have been characterised. It was shown that TiC additions effectively promoted the densification process by forming (Zr,Ti)C solid solution. The relative densities and mechanical properties of ZrC samples increased with the increasing of TiC content or the sintering temperature. Ceramic with the content of TiC up to 10 vol.-% sintering at 1850°C showed an excellent combination of properties including a relative density of 98.7%, hardness of 20.8 GPa and flexural strength of 605 MPa.
Key concepts: Materials science, Spark plasma sintering, Relative density, Ceramic, Sintering, Microstructure, Flexural strength, Composite material