PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

The use of severe plastic deformation for nanostructuring of bulk metals for advanced properties.

Autorzy
Identyfikatory
Warianty tytułu
Konferencja
International Conference on Fabrication and Properties of Metallic Nanomaterials, Warsaw, 17-19 June, 2004.
Języki publikacji
EN
Abstrakty
EN
Ultrafine-grained (UFG) structures that can be formed in metallic materials subjected to severe plastic deformation (SPD), i.e. to high plastic deformation under high pressure, can lead to new properties of the materials. This paper presents the results of recent studies in this area focusing on the search for optimum processing parameters and microstructural characteristics to achieve unique properties.
Rocznik
Strony
343--349
Opis fizyczny
Twórcy
autor
  • Institute of the Physics of Advanced Materials, Ufa State Aviation Technical University, K. Marx Str. 12, Ufa 450000 Russia
  • Institute of the Physics of Advanced Materials, Ufa State Aviation Technical University, K. Marx Str. 12, Ufa 450000 Russia
Bibliografia
  • [1] Proceedings of the NATO ARW on Investigations and Applications of Severe Plastic Deformation: NATO Sci. Ser., Ed. by T. C. Lowe and R. Z. Valiev (Kluwer, Dordrecht, 2000), Vol. 80.
  • [2] Ultrafine-grained Materials II, ed. by Y. T. Zhu et al. (TMS, Warrendale, PA, 2002); Ultrafine-grained Materials III, ed. by Y. T. Zhu (TMS, Warrendale, PA, 2004)
  • [3] R. Z. Valiev, R. K. Islamgaliev, I. V. A1exandrov, Prog. Mater., Sci., 45, 102 (2000).
  • [4] T. G. Langdon, M. Furukawa, M. Nemoto, Z. Horita, JOM, 52, 30 (2000).
  • [5] R. Z. Valiev, Nature Mater., 3, 511 (2004).
  • [6] V. V. Rybin, Large Plastic Deformations and Fracture of Metals (Metallurgiya, Moscow, 1986) [in Russian].
  • [7] E. Schmid, W. Boas, Plasticity of Crystals with Special Reference to Metals, Chapman and Hall, London, (1968).
  • [8] D. G. Morris, Mechanical Behavior of Nanostructured Materials, Trans. Tech. Publication, Zürich, (1998).
  • [9] R. Z. Valiev, A. V. Korznikov, R. R. Mulyukov, Mater. Sci., Eng., A 186, 141 (1993).
  • [10] R. Z. Valiev, N. A. Krasilnikov, N. K. Tsenev, Mater. Sci. Eng., A 137, 35 (1991).
  • [11] N. A. Akhmadeev, R. Z. Valiev, V. I. Kopylov, R. R. Mulyukov, Rus. Metall. (Metally), No. 5, 96 (1992).
  • [12] V. A. Valitov, G. A. Salishchev, Sh. Kh. Mukhtarov, Rus. Metall (Metally), No. 3, 127 (1994).
  • [13] Y. Saito, N. Tsuji, T. Sakai, Acta Mater., 47, 579 (1999).
  • [14] Y. T. Zhu, J. Huang, in: Ultrafine-grained Materials II, Ed. by Y. T. Zhu et al. (TMS, Charlotte, North Carolina, USA, 2002), p. 331.
  • [15] V. M. Segal, V. I. Reznikov, A. E. Drobyshevsky, V. I. Kopylov, Izv. Akad. Nauk SSSR, Met., No. 1, 115 (1981).
  • [16] V. M. Segal, V. I. Reznikov, V. I. Kopylov, et al., Processes of Plastic Structure Formation in Metals (Navuka i tekhnika, Minsk, 1994) [in Russian].
  • [17] J. R. Weertman, Mater. Sci. Eng., A 166, 161 (1993).
  • [18] C. C. Koch, D. G. Morris, K. Lu, A. Inoue, MRS Bull., 24, 54 (1999).
  • [19] R. Z. Valiev, I. V. Alexandrov, Y. T. Zhu, T. C. Lowe, J. Mater. Res. 17 (1), 5 (2002).
  • [20] R. Z. Valiev, Nature, 419, 887 (2002).
  • [21] Y. Wang et al., Nature 419, 912 (2002).
  • [22] R. Z. Valiev, A. V. Sergueeva, A. K. Mukherjee, Scr. Mater., 49, 669 (2003).
  • [23] E. R. Parker, Materials Data Book for Engineers and Scientists, McGraw-Hill, New York, (1967).
  • [24] E. W. Hart, Acta Metall., 15, 351 (1967).
  • [25] R. Z. Valiev, E. V. Kozlov, Yu. F. Ivanov, et al., Acta Metall. Mater., 42, 2467 (1994).
  • [26] T. G. Nie, J. Wadsworth, O. D. Sherby, Superplasticity in Metals and Ceramics (Cambridge Univ. Press, Cambridge, 1997).
  • [27] O. A. Kaibyshev, Superplasticity in Commercial Alloy and Ceramics (Springer, Berlin, 1993).
  • [28] R. Z. Valiev, Nanostruct. Mater. 6, 73 (1995).
  • [29] Z. Horita, D. J. Smith, M. Nemoto, R. Z. Valiev, T. G. Langdon, J. Mater. Res. 13, 446 (1998).
  • [30] Y. T. Zhu, J. Y. Huang, J. Gubicza, T. Ungar, Y. M. Wang, E. Ma, R. Z. Valiev, J. Mater. Res. 18, 1908 (2002).
  • [31] Yu. R. Kolobov, G. P. Grabovetskaya, M. B. Ivanov, A. P. Zhilyaev, R. Z. Valiev, Scr. Mater. 44, 873 (2001).
  • [32] Yu. R. Kolobov, R. Z. Valiev, G. P. Grabovetskaya, A. P. Zhilyaev, E. F. Dudarev, K. V. Ivanov, M. B. Ivanov, O. A. Kashin, E. V. Naidenkin, Grain-Boundary Diffusion and Properties of Nanomaterials (Nauka, Novosibirsk, 2001) [in Russian].
  • [33] R. Z. Valiev, V. Yu. Gertsman, O. A. Kaibyshev, Phys. Status Solidi A 97, 11 (1986).
  • [34] Y. Champion, C. Langlois, S. Guerin-Mailly, Science 300, 310 (2003).
  • [35] H. W. Höppel, R. Z. Va1iev, Z. Metallkd. 93, 641 (2002).
  • [36] A. Vinogradov, S. Hashimoto, Adv. Eng. Mater. 5, 351 (2003).
  • [37] M. W. Grabski, J. de Physique, 46, 567 (1985).
  • [38] W. Lojkowski, H. Fecht, Prog. Mat. Sci., 45, 339 (2001).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BOS4-0010-0007
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.