Mechanical and Functional Properties of Titanium Alloys Processed by Severe Plastic Deformation

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Abstract:

Systematized literature data related to the study of mechanical and functional properties of ultrafine-grained and nanostructured metallic materials processed by deformation methods are presented. Special attention is given to the mechanical behavior of titanium materials under tension, as well as under impact and cyclic loads. The advantage of the materials under investigation over their coarse-grained analogues is shown.

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137-148

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May 2011

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[1] H. Gleiter: Acta Mater. Vol. 48 (2000), p.1.

Google Scholar

[2] R.Z. Valiev, I.V. Alexandrov: Bulk nanostructured metallic materials (Akademkniga, Мoscow, 2007).

Google Scholar

[3] A.V. Sergueeva, V.V. Stolyarov, R.Z. Valiev and A.K. Mukherjee: Scripta Materialia, Vol. 45. (2001) p.747.

DOI: 10.1016/s1359-6462(01)01089-2

Google Scholar

[4] V.V. Stolyarov, Y.T. Zhu, I.V. Alexandrov et al: Mater. Sci&Eng. A343. Vol. 1-2. (2003) p.43.

Google Scholar

[5] V.V. Stolyarov, E.A. Prokofiev, S.D. Prokoshkin et al: Fiz. Met. Metalloved, V. 100, №6. (2005) p.91.

Google Scholar

[6] V.V. Stolyarov, I.V. Alexandrov, Yu.R. Kolobov et al: in Proc. of 7th Int. Fatigue Congress, Beijing, China. V. 3. (1999) p.1435.

Google Scholar

[7] V.V. Stolyarov, U. Kh. Ugurchiev, I.B. Trubitsyna et al: Fizika i Tekhnika Vysokikh Davleniy, 4, 16 (2006), p.48.

Google Scholar

[8] V. Stolyarov: Trans Tech Publications, Switzerland, Mater. Sci. Forum Vols. 584-586 (2008) p.507.

Google Scholar

[9] V. Stolyarov: Mater. Sci. Forum Vols. 633-634 (2010) p.595.

Google Scholar

[10] E.O. Hall: Proc. Phys. Soc. London, ser. B. Vol. 64. №1. (1951) p.747.

Google Scholar

[11] N.J. Petch: J. Iron and Steel Inst. Vol. 174. (1953) p.25.

Google Scholar

[12] A.M. El-Sherik, U. Erb, G. Palumbo, K.T. Aust: Scripta Metall et Materialia. Vol. 27. № 9, (1992) p.1185.

DOI: 10.1016/0956-716x(92)90596-7

Google Scholar

[13] A.N. Chokshi, A. Rosen, J. Karch, H. Gleiter H: Scripta Metall. Vol. 23. №10 (1989) p.1679.

Google Scholar

[14] V.V. Stolyarov: Zavodskaya Laboratoriya. Diagnostika Materialov, Vol. 74, № 10 (2008) p.65.

Google Scholar

[15] V.V. Stolyarov: Metallovedenie i Termicheskaya Obrabotka Metallov, Vol. 2 (2007) p.13.

Google Scholar

[16] V.V. Stolyarov, R.Z. Valiev, Y.T. Zhu: Applied Physics Letters 88, (2006) 041905.

Google Scholar

[17] V. Bengus, S. Smirnov, E. Tabachnikova et al: Proc. of NATO ASI on Nanostructured Materials by HP Severe Plastic Deformation. Vol. 212, (2005) p.55.

Google Scholar

[18] Y. Wang, E. Ma, R. Valiev, Y. Zhu: Adv. Mater. Vol. 16 № 4. (2004) p.328.

Google Scholar

[19] A. Yu. Vinogradov, V.V. Stolyarov, S. Hashimoto, R.Z. Valiev: Mater. Sci&Eng. A 318. №1-2. (2001) p.163.

Google Scholar

[20] K.S. Kumar, H.V. Swaygenhoven, S. Suresh: Acta Mater. Vol. 51. (2003) p.5743.

Google Scholar

[21] V.V. Stolyarov: Zavodskaya Laboratoriya. Diagnostika Materialov. Vol. 72. №9, (2006) p.45.

Google Scholar

[22] M.V. Grabsky: Structural superplasticity of metals Metallurgiya, Мoscow, (1975).

Google Scholar

[23] A.V. Sergueeva, V.V. Stolyarov, R.Z. Valiev et al: Scripta Mater. Vol. 43, (2000) p.819.

Google Scholar

[24] R.B. Figueiredo, T.G. Langdon: Adv. Eng. Mater. Vol. 10. #1–2 (2008) p.37.

Google Scholar

[25] V.V. Stolyarov, L. Zeipper, B. Mingler and M. Zehetbauer: Mater. Sci. &Eng A 476, № 1-2,  (2008) p.98.

Google Scholar

[26] J.H. Driver: Scripta Mater. Vol. 51 (2004) p.819.

Google Scholar

[27] M. Zehetbauer, D. Trattner: Mater. Sci&Eng. A89 (1987) p.93.

Google Scholar

[28] I. Yu. Khmelevskaya, S.D. Prokoshkin, I.B. Trubitsyna et al: Mater. Sci. &Eng A481-482, (2008) p.119.

Google Scholar

[29] V. Brailovski, I. Yu. Khmelevskaya, S.D. Prokoshkin et al: Phys. Metall. Metallogr; 97(Suppl. 1) (2004) p.3.

Google Scholar

[30] T. Waitz, V. Kazykhanov, H.P. Karnthaler: Acta Mater. Vol. 52 (2004) p.137.

Google Scholar

[31] R. Mishra, B. Basu, R. Balasubramaniam: Mater. Sci. &Eng, A 373 (2004) p.370.

Google Scholar

[32] Z.N. Farhat, Y. Ding, D.O. Northood and A.T. Alpas: Mater. Sci. &Eng A206 (1996) p.302.

Google Scholar

[33] C.A. Schuh, T.G. Nieh and T. Yamasaki: Scripta Mater. Vol. 46 (2002) p.735.

Google Scholar

[34] Y.S. Zhang, Z. Han, K. Wang and K. Lu: Wear, Vol. 260, (2006) p.942.

Google Scholar

[35] X.Y. Wang and D.Y. Li: Wear, Vol. 255 (2003) p.836.

Google Scholar

[36] Z. Han, L. Lu, K. Lu: Tribology Letters, Vol. 21, № 1, (2006) p.47.

Google Scholar

[37] V.V. Stolyarov, L. Sh. Shuster, M. Sh. Migranov et al: Mater. Sci. &Eng., A 371 (2004) p.313.

Google Scholar

[38] S.V. Chertovskikh, L. Sh. Shuster, V.V. Stolyarov: Friction and wear, V. 26, №1 (2005) p.80.

Google Scholar