Kyriakopoulou, H.P.; Karmiris-Obratański, P.; Tazedakis, A.S.; Daniolos, N.M.; Dourdounis, E.C.; Manolakos, D.E.; Pantelis, D.
Investigation of Hydrogen Embrittlement Susceptibility and Fracture Toughness Drop after in situ Hydrogen Cathodic Charging for an X65 Pipeline Steel. Micromachines 2020, 11, 430.
https://doi.org/10.3390/mi11040430
AMA Style
Kyriakopoulou HP, Karmiris-Obratański P, Tazedakis AS, Daniolos NM, Dourdounis EC, Manolakos DE, Pantelis D.
Investigation of Hydrogen Embrittlement Susceptibility and Fracture Toughness Drop after in situ Hydrogen Cathodic Charging for an X65 Pipeline Steel. Micromachines. 2020; 11(4):430.
https://doi.org/10.3390/mi11040430
Chicago/Turabian Style
Kyriakopoulou, Helen P., Panagiotis Karmiris-Obratański, Athanasios S. Tazedakis, Nikoalos M. Daniolos, Efthymios C. Dourdounis, Dimitrios E. Manolakos, and Dimitrios Pantelis.
2020. "Investigation of Hydrogen Embrittlement Susceptibility and Fracture Toughness Drop after in situ Hydrogen Cathodic Charging for an X65 Pipeline Steel" Micromachines 11, no. 4: 430.
https://doi.org/10.3390/mi11040430
APA Style
Kyriakopoulou, H. P., Karmiris-Obratański, P., Tazedakis, A. S., Daniolos, N. M., Dourdounis, E. C., Manolakos, D. E., & Pantelis, D.
(2020). Investigation of Hydrogen Embrittlement Susceptibility and Fracture Toughness Drop after in situ Hydrogen Cathodic Charging for an X65 Pipeline Steel. Micromachines, 11(4), 430.
https://doi.org/10.3390/mi11040430