Ghiban, B.; Pascu, N.E.; Antoniac, I.V.; Jiga, G.; Milea, C.; Petre, G.; Gheorghe, C.; Munteanu, C.; Istrate, B.
Surface Characterization of Fracture in Polylactic Acid vs. PLA + Particle (Cu, Al, Graphene) Insertions by 3D Fused Deposition Modeling Technology. Coatings 2021, 11, 633.
https://doi.org/10.3390/coatings11060633
AMA Style
Ghiban B, Pascu NE, Antoniac IV, Jiga G, Milea C, Petre G, Gheorghe C, Munteanu C, Istrate B.
Surface Characterization of Fracture in Polylactic Acid vs. PLA + Particle (Cu, Al, Graphene) Insertions by 3D Fused Deposition Modeling Technology. Coatings. 2021; 11(6):633.
https://doi.org/10.3390/coatings11060633
Chicago/Turabian Style
Ghiban, Brândușa, Nicoleta Elisabeta Pascu, Iulian Vasile Antoniac, Gabriel Jiga, Claudia Milea, Gabriela Petre, Cristina Gheorghe, Corneliu Munteanu, and Bogdan Istrate.
2021. "Surface Characterization of Fracture in Polylactic Acid vs. PLA + Particle (Cu, Al, Graphene) Insertions by 3D Fused Deposition Modeling Technology" Coatings 11, no. 6: 633.
https://doi.org/10.3390/coatings11060633
APA Style
Ghiban, B., Pascu, N. E., Antoniac, I. V., Jiga, G., Milea, C., Petre, G., Gheorghe, C., Munteanu, C., & Istrate, B.
(2021). Surface Characterization of Fracture in Polylactic Acid vs. PLA + Particle (Cu, Al, Graphene) Insertions by 3D Fused Deposition Modeling Technology. Coatings, 11(6), 633.
https://doi.org/10.3390/coatings11060633