Peculiar Features of Microstructure Formation and Microhardness Variations During Torsional Straining of Tantalum Specimens in Bridgman Anvils

Springer Science and Business Media LLC - Tập 57 - Trang 1683-1690 - 2015
I. A. Ditenberg1,2,3, A. N. Tymentsev1,2,3, A. V. Korznikov4
1National Research Tomsk State University, Tomsk, Russia
2Institute of Strength Physics and Materials Science of the Siberian Branch of the Russian Academy of Sciences, Tomsk, Russia
3V. D. Kuznetsov Siberian Physical-Technical Institute at Tomsk State University, Tomsk, Russia
4Institute for Metal Superplasticity Problems of the Russian Academy of Sciences, Ufa, Russia

Tóm tắt

Using the method of transmission electron microscopy, peculiar features of evolution of microstructure and variations in microhardness of Та are investigated under torsional loading in the Bridgman anvil as a function of plastic deformation at room temperature. A quantitative examination of grain and defect’s structure of the material under study and the values of local internal stresses is performed in different loading stages. The mechanisms of formation of submicrocrystalline and nanostructured states are analyzed and so is the microstructure variation as a function of the defect-structure characteristics, strain level, and spacing from the axis of torsion.

Tài liệu tham khảo

A. V. Korznikov, A. N. Tyumentsev, and I. A. Ditenberg, Phys. Met. Metallogr., 106, No. 4, 118–423 (2008). I. A. Ditenberg, A. N. Tyumentsev, K. V. Grinyaev, et al., Tech. Phys., 56, Issue 6, 815–820 (2011). I. A. Ditenberg, A. N. Tyumentsev, A. V. Korznikov, et al., Phys. Met. Metallogr., 113, No. 2, 160–169 (2012). A. N. Tyumentsev and I. A. Ditenberg, Phys. Mesomech., 14, No. 5–6, 249–260 (2011). A. N. Tyumentsev and I. A. Ditenberg, Russ. Phys. J., 54, No. 9, 977–988 (2012). A. N. Tyumentsev, I. A. Ditenberg, A. D. Korotaev, and K. I. Denisov, Phys. Mesomech., 16, No. 4, 319–334 (2013). S. A. Vins, I. A. Ditenberg, A. N. Tyumentsev, and A. V. Korznikov, Izv. Vyssh. Uchebn. Zaved. Fiz., 52, No. 12/2, 31–36 (2009). I. A. Smirnova, V. I. Levit, V. I. Pilyugin, et al., Fiz. Met. Metalloved., 61, No. 6, 1170–1177 (1986). A. N. Tyumentsev, I. A. Ditenberg, Yu. P. Pinzhin, et al., Phys. Met. Metallogr., 96, No. 4, 378–387 (2003). I. A. Ditenberg, A. N. Tyumentsev, A. V. Korznikov, and E. A. Korznikova, Phys. Mesomech., 16, No. 3, 239–247 (2013). A. N. Tymenstev, M. V. Tretyak, Yu. P. Pinzhin, et al., Phys. Met. Metallogr., 90, No. 5, 461–470 (2000). J. G. Li, M. Umemoto, Y. Todaka, et al., Rev. Adv. Mater. Sci., 18, No. 6, 577–582 (2008).