M. Hamamcı Et Al. , "Thermal shock effects on the microstructure and mechanical properties of iron-based composites reinforced by in-situ Fe2B/FeB ceramic phases," Ceramics International , vol.50, no.10, pp.17166-17180, 2024
Hamamcı, M. Et Al. 2024. Thermal shock effects on the microstructure and mechanical properties of iron-based composites reinforced by in-situ Fe2B/FeB ceramic phases. Ceramics International , vol.50, no.10 , 17166-17180.
Hamamcı, M., NAİR, F., CERİT, A. A., & GÜNEŞ, R., (2024). Thermal shock effects on the microstructure and mechanical properties of iron-based composites reinforced by in-situ Fe2B/FeB ceramic phases. Ceramics International , vol.50, no.10, 17166-17180.
Hamamcı, Mustafa Et Al. "Thermal shock effects on the microstructure and mechanical properties of iron-based composites reinforced by in-situ Fe2B/FeB ceramic phases," Ceramics International , vol.50, no.10, 17166-17180, 2024
Hamamcı, Mustafa Et Al. "Thermal shock effects on the microstructure and mechanical properties of iron-based composites reinforced by in-situ Fe2B/FeB ceramic phases." Ceramics International , vol.50, no.10, pp.17166-17180, 2024
Hamamcı, M. Et Al. (2024) . "Thermal shock effects on the microstructure and mechanical properties of iron-based composites reinforced by in-situ Fe2B/FeB ceramic phases." Ceramics International , vol.50, no.10, pp.17166-17180.
@article{article, author={Mustafa Hamamcı Et Al. }, title={Thermal shock effects on the microstructure and mechanical properties of iron-based composites reinforced by in-situ Fe2B/FeB ceramic phases}, journal={Ceramics International}, year=2024, pages={17166-17180} }