F. N. Depboylu Et Al. , "Choosing between commercially pure titanium and Ti-6Al-4V gyroid structures for orthopedic applications: An analysis through Timoshenko beam theory, the Gibson-Ashby model and experimental methods," Materials Today Communications , vol.39, 2024
Depboylu, F. N. Et Al. 2024. Choosing between commercially pure titanium and Ti-6Al-4V gyroid structures for orthopedic applications: An analysis through Timoshenko beam theory, the Gibson-Ashby model and experimental methods. Materials Today Communications , vol.39 .
Depboylu, F. N., Yasa, E., Poyraz, Ö., KORKUSUZ, F., & Popa, A., (2024). Choosing between commercially pure titanium and Ti-6Al-4V gyroid structures for orthopedic applications: An analysis through Timoshenko beam theory, the Gibson-Ashby model and experimental methods. Materials Today Communications , vol.39.
Depboylu, Fatma Et Al. "Choosing between commercially pure titanium and Ti-6Al-4V gyroid structures for orthopedic applications: An analysis through Timoshenko beam theory, the Gibson-Ashby model and experimental methods," Materials Today Communications , vol.39, 2024
Depboylu, Fatma N. Et Al. "Choosing between commercially pure titanium and Ti-6Al-4V gyroid structures for orthopedic applications: An analysis through Timoshenko beam theory, the Gibson-Ashby model and experimental methods." Materials Today Communications , vol.39, 2024
Depboylu, F. N. Et Al. (2024) . "Choosing between commercially pure titanium and Ti-6Al-4V gyroid structures for orthopedic applications: An analysis through Timoshenko beam theory, the Gibson-Ashby model and experimental methods." Materials Today Communications , vol.39.
@article{article, author={Fatma Nur Depboylu Et Al. }, title={Choosing between commercially pure titanium and Ti-6Al-4V gyroid structures for orthopedic applications: An analysis through Timoshenko beam theory, the Gibson-Ashby model and experimental methods}, journal={Materials Today Communications}, year=2024}