Arias-González, F.; RodrÃguez-Contreras, A.; Punset, M.; Manero, J.M.; Barro, Ó.; Fernández-Arias, M.; Lusquiños, F.; Gil, J.; Pou, J.
Laser-Deposited Beta Type Ti-42Nb Alloy with Anisotropic Mechanical Properties for Pioneering Biomedical Implants with a Very Low Elastic Modulus. Materials 2022, 15, 7172.
https://doi.org/10.3390/ma15207172
AMA Style
Arias-González F, RodrÃguez-Contreras A, Punset M, Manero JM, Barro Ó, Fernández-Arias M, Lusquiños F, Gil J, Pou J.
Laser-Deposited Beta Type Ti-42Nb Alloy with Anisotropic Mechanical Properties for Pioneering Biomedical Implants with a Very Low Elastic Modulus. Materials. 2022; 15(20):7172.
https://doi.org/10.3390/ma15207172
Chicago/Turabian Style
Arias-González, Felipe, Alejandra RodrÃguez-Contreras, Miquel Punset, José MarÃa Manero, Óscar Barro, Mónica Fernández-Arias, Fernando Lusquiños, Javier Gil, and Juan Pou.
2022. "Laser-Deposited Beta Type Ti-42Nb Alloy with Anisotropic Mechanical Properties for Pioneering Biomedical Implants with a Very Low Elastic Modulus" Materials 15, no. 20: 7172.
https://doi.org/10.3390/ma15207172
APA Style
Arias-González, F., RodrÃguez-Contreras, A., Punset, M., Manero, J. M., Barro, Ó., Fernández-Arias, M., Lusquiños, F., Gil, J., & Pou, J.
(2022). Laser-Deposited Beta Type Ti-42Nb Alloy with Anisotropic Mechanical Properties for Pioneering Biomedical Implants with a Very Low Elastic Modulus. Materials, 15(20), 7172.
https://doi.org/10.3390/ma15207172