Blum, W.; Dvořák, J.; Král, P.; Eisenlohr, P.; Sklenička, V.
Strain Rate Contribution due to Dynamic Recovery of Ultrafine-Grained Cu–Zr as Evidenced by Load Reductions during Quasi-Stationary Deformation at 0.5 Tm. Metals 2019, 9, 1150.
https://doi.org/10.3390/met9111150
AMA Style
Blum W, Dvořák J, Král P, Eisenlohr P, Sklenička V.
Strain Rate Contribution due to Dynamic Recovery of Ultrafine-Grained Cu–Zr as Evidenced by Load Reductions during Quasi-Stationary Deformation at 0.5 Tm. Metals. 2019; 9(11):1150.
https://doi.org/10.3390/met9111150
Chicago/Turabian Style
Blum, Wolfgang, Jiři Dvořák, Petr Král, Philip Eisenlohr, and Vaclav Sklenička.
2019. "Strain Rate Contribution due to Dynamic Recovery of Ultrafine-Grained Cu–Zr as Evidenced by Load Reductions during Quasi-Stationary Deformation at 0.5 Tm" Metals 9, no. 11: 1150.
https://doi.org/10.3390/met9111150
APA Style
Blum, W., Dvořák, J., Král, P., Eisenlohr, P., & Sklenička, V.
(2019). Strain Rate Contribution due to Dynamic Recovery of Ultrafine-Grained Cu–Zr as Evidenced by Load Reductions during Quasi-Stationary Deformation at 0.5 Tm. Metals, 9(11), 1150.
https://doi.org/10.3390/met9111150