Mirzaali, M.J.; Herranz de la Nava, A.; Gunashekar, D.; Nouri-Goushki, M.; Doubrovski, E.L.; Zadpoor, A.A.
Fracture Behavior of Bio-Inspired Functionally Graded Soft–Hard Composites Made by Multi-Material 3D Printing: The Case of Colinear Cracks. Materials 2019, 12, 2735.
https://doi.org/10.3390/ma12172735
AMA Style
Mirzaali MJ, Herranz de la Nava A, Gunashekar D, Nouri-Goushki M, Doubrovski EL, Zadpoor AA.
Fracture Behavior of Bio-Inspired Functionally Graded Soft–Hard Composites Made by Multi-Material 3D Printing: The Case of Colinear Cracks. Materials. 2019; 12(17):2735.
https://doi.org/10.3390/ma12172735
Chicago/Turabian Style
Mirzaali, Mohammad J., Alba Herranz de la Nava, Deepthi Gunashekar, Mahdyieh Nouri-Goushki, Eugeni. L. Doubrovski, and Amir A. Zadpoor.
2019. "Fracture Behavior of Bio-Inspired Functionally Graded Soft–Hard Composites Made by Multi-Material 3D Printing: The Case of Colinear Cracks" Materials 12, no. 17: 2735.
https://doi.org/10.3390/ma12172735
APA Style
Mirzaali, M. J., Herranz de la Nava, A., Gunashekar, D., Nouri-Goushki, M., Doubrovski, E. L., & Zadpoor, A. A.
(2019). Fracture Behavior of Bio-Inspired Functionally Graded Soft–Hard Composites Made by Multi-Material 3D Printing: The Case of Colinear Cracks. Materials, 12(17), 2735.
https://doi.org/10.3390/ma12172735