Computer-Simulation Assessment of the Stress–Strain and Kinematic States of a Titanium Nickelide Billet during Screw Rolling

Author:

Skripalenko M. M.,Romantsev B. A.,Yusupov V. S.,Andreev V. A.,Skripalenko M. N.,Rogachev S. O.,Vorotnikov V. A.,Gartvig A. A.,Gladkov Y. A.

Publisher

Springer Science and Business Media LLC

Reference20 articles.

1. V. Sheremetyev, K. Lukashevich, A. Kreitcberg, A. Kudryashova, M. Tsaturyants, S. Galkin, V. Andreev, S. Prokoshkin, and V. Brailovski, “Optimization of a thermomechanical treatment of superelastic Ti–Zr–Nb alloys for the production of bar stock for orthopedic implants,” J. Alloys and Compounds, 928, 167143 (2022).

2. V. Sheremetyev, A. Kudryashova, V. Cheverikin, A. Korotitskiy, S. Galkin, S. Prokoshkin, and V. Brailovski, “Hot radial shear rolling and rotary forging of Metastable Beta Ti-18ZR-14Nb (at. %) alloy for bone implants: Microstructure, texture and functional properties,” J. Alloys and Compounds, 800, 320–326 (2019).

3. V. A. Sheremet’ev, A. A. Kudryashova, X . T. Dinh, S. P. Galkin, S. D. Prokoshkin, and A. Brailovskii, “Advanced technology for preparing bar from medical grade Ti-Zr-Nb superelastic alloy based on combination of radial-shear rolling and rotary forging,” Metallurgist, 63, 51–61 (2019).

4. I. B. Ratochka, I. P. Mishin, O. N. Lykova, E. V. Naydenkin, and N. B. Varlamova, “Structural evolution and mechanical properties of a VT22 titanium alloy under high-temperature deformation,” Russian Physics J., 59, 397–402 (2016).

5. I. V. Vlasov, Yu. F. Gomorova, A. V. Yakovlev, and E. V. Naidenkin, “Change of the impact strength of VT8 and VT14 titanium alloys after screw rolling and controlled cooling,” in: Abstracts of Papers Read at Int. Conf. on Physical Mesomechanics: Materials with Multilevel Hierarchical Structure and Intelligent Production Technologies [in Russian], Tomsk, September 6–10 (2021), pp. 137–138.

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