VALIEV, R.Z.,
PROKOFIEV, E.A.,
KAZARINOV, N.A.,
RAAB, G.I.,
MINASOV, T.B.,
STRÁSKÝ, J. (2020) is their nanostructuring by using
severe plastic deformation (SPD) techniques. For medical devices, such properties include
Klevtsov, GV,
Valiev, RZ,
Klevtsova, NA,
Tyurkov, MN,
Linderov, ML,
Abramova, MM,
Raab, AG,
Minasov, TB (2021) and the ultrafine-grained state produced by
severe plastic deformation processing via equal-channel angular pressing
Bazunova, M.V.,
Lazdin, R.Yu.,
Elinson, M.R.,
Sharafutdinova, L.A.,
Mustakimov, R.A.,
Kulish, E.I. (2022) glycol) impact on the structure,
deformation-strength characteristics and hemocompatibility of the film
Rezyapova, Luiza R.,
Safargalina, Zarema A.,
Usmanov, Emil I.,
Valiev, Roman R.,
Minasov, Timur B.,
Valiev, Ruslan Z. (2024) using
severe plastic deformation processing. Nanostructured Grade 4 Ti has a very high strength, and its
anomalies: scoliosis, chest
deformity, pseudarthrosis, requiring surgical treatment and long
to investigate the short-range ordering effect on tensile
deformation of bicrystals with grain boundaries (GBs) Σ
deformity disorder is more
severe in patients with CHF of III-IV functional classes [Mondillo S. et al, 2011].