A. KARCI Et Al. , "Fatigue crack growth rate and propagation mechanisms of SiC particle reinforced Al alloy matrix composites," AIRCRAFT ENGINEERING AND AEROSPACE TECHNOLOGY , vol.96, no.2, pp.185-192, 2024
KARCI, A. Et Al. 2024. Fatigue crack growth rate and propagation mechanisms of SiC particle reinforced Al alloy matrix composites. AIRCRAFT ENGINEERING AND AEROSPACE TECHNOLOGY , vol.96, no.2 , 185-192.
KARCI, A., ERTURUN, V., Cakir, E., & ÇAM, Y., (2024). Fatigue crack growth rate and propagation mechanisms of SiC particle reinforced Al alloy matrix composites. AIRCRAFT ENGINEERING AND AEROSPACE TECHNOLOGY , vol.96, no.2, 185-192.
KARCI, ADEM Et Al. "Fatigue crack growth rate and propagation mechanisms of SiC particle reinforced Al alloy matrix composites," AIRCRAFT ENGINEERING AND AEROSPACE TECHNOLOGY , vol.96, no.2, 185-192, 2024
KARCI, ADEM Et Al. "Fatigue crack growth rate and propagation mechanisms of SiC particle reinforced Al alloy matrix composites." AIRCRAFT ENGINEERING AND AEROSPACE TECHNOLOGY , vol.96, no.2, pp.185-192, 2024
KARCI, A. Et Al. (2024) . "Fatigue crack growth rate and propagation mechanisms of SiC particle reinforced Al alloy matrix composites." AIRCRAFT ENGINEERING AND AEROSPACE TECHNOLOGY , vol.96, no.2, pp.185-192.
@article{article, author={ADEM KARCI Et Al. }, title={Fatigue crack growth rate and propagation mechanisms of SiC particle reinforced Al alloy matrix composites}, journal={AIRCRAFT ENGINEERING AND AEROSPACE TECHNOLOGY}, year=2024, pages={185-192} }