Moustafa, E.B.; Ghandourah, E.; Youness, R.A.; Melaibari, A.A.; Taha, M.A.
Ultralight Functionally Graded Hybrid Nanocomposites Based on Yttrium and Silica-Reinforced Mg10Li5Al Alloy: Thermal and Tribomechanical Properties. Materials 2022, 15, 9052.
https://doi.org/10.3390/ma15249052
AMA Style
Moustafa EB, Ghandourah E, Youness RA, Melaibari AA, Taha MA.
Ultralight Functionally Graded Hybrid Nanocomposites Based on Yttrium and Silica-Reinforced Mg10Li5Al Alloy: Thermal and Tribomechanical Properties. Materials. 2022; 15(24):9052.
https://doi.org/10.3390/ma15249052
Chicago/Turabian Style
Moustafa, Essam B., Emad Ghandourah, Rasha A. Youness, Ammar A. Melaibari, and Mohammed A. Taha.
2022. "Ultralight Functionally Graded Hybrid Nanocomposites Based on Yttrium and Silica-Reinforced Mg10Li5Al Alloy: Thermal and Tribomechanical Properties" Materials 15, no. 24: 9052.
https://doi.org/10.3390/ma15249052
APA Style
Moustafa, E. B., Ghandourah, E., Youness, R. A., Melaibari, A. A., & Taha, M. A.
(2022). Ultralight Functionally Graded Hybrid Nanocomposites Based on Yttrium and Silica-Reinforced Mg10Li5Al Alloy: Thermal and Tribomechanical Properties. Materials, 15(24), 9052.
https://doi.org/10.3390/ma15249052