Panin, S.; Vlasov, I.; Maksimov, P.; Moiseenko, D.; Maruschak, P.; Yakovlev, A.; Schmauder, S.; Berto, F.
Increasing Fatigue Life of 09Mn2Si Steel by Helical Rolling: Theoretical–Experimental Study on Governing Role of Grain Boundaries. Materials 2020, 13, 4531.
https://doi.org/10.3390/ma13204531
AMA Style
Panin S, Vlasov I, Maksimov P, Moiseenko D, Maruschak P, Yakovlev A, Schmauder S, Berto F.
Increasing Fatigue Life of 09Mn2Si Steel by Helical Rolling: Theoretical–Experimental Study on Governing Role of Grain Boundaries. Materials. 2020; 13(20):4531.
https://doi.org/10.3390/ma13204531
Chicago/Turabian Style
Panin, Sergey, Ilya Vlasov, Pavel Maksimov, Dmitry Moiseenko, Pavlo Maruschak, Alexander Yakovlev, Siegfried Schmauder, and Filippo Berto.
2020. "Increasing Fatigue Life of 09Mn2Si Steel by Helical Rolling: Theoretical–Experimental Study on Governing Role of Grain Boundaries" Materials 13, no. 20: 4531.
https://doi.org/10.3390/ma13204531
APA Style
Panin, S., Vlasov, I., Maksimov, P., Moiseenko, D., Maruschak, P., Yakovlev, A., Schmauder, S., & Berto, F.
(2020). Increasing Fatigue Life of 09Mn2Si Steel by Helical Rolling: Theoretical–Experimental Study on Governing Role of Grain Boundaries. Materials, 13(20), 4531.
https://doi.org/10.3390/ma13204531