Skip to main content
Log in

Deposition of Coatings with the Shape Memory Effect on the Surface of Steels by Argon-Arc Facing

  • Published:
Metal Science and Heat Treatment Aims and scope

Abstract

The technological aspects of argon-arc facing of an alloy with the shape memory effect (nitinol) on the surface of steels 45 and 40Kh are considered. Results obtained in working out the facing process and structural and metallographic studies of the compositions are presented. The method of multifractal parametrization is used for determining the size of the transition zone and the stability of the structure of the faced layer. Possible applications of materials whose surface is modified by an alloy with the shape memory effect are considered.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

REFERENCES

  1. V. A. Likhachev (ed.), Materials with Shape Memory, Vol. 4 [in Russian], Izd. NIIKh SPbGU, St. Petersburg (1998).

    Google Scholar 

  2. E. Wales, L. Chang, and D. S. Grummon, “Residual stress, adhesion and crystallization of ion-sputtering and IBED processed NiTi films,” Mater. Res. Soc. Symp. Proc., 246, 349–354 (1991).

    Google Scholar 

  3. J. L. He, K. W. Won, and J. T. Chang, “NiTi films prepared by cathodic arc plasma plating,” Thin Solid Films, 359, 46–54 (2000).

    Google Scholar 

  4. Zh. M. Blednova and D. G. Budrevich, “On the prospects using materials with the shape memory effect in friction units,” in: Proc. 4th Int. Symp. on Tribophatics (ISTF 4), 23 - 27 Sept. 2002, Ternopol (Ukraine), Vol. 2 [in Russian], Puyul Ternopol State Technical University, Ternopol (2002), pp. 681–686.

    Google Scholar 

  5. Zh. M. Blednova, D. G. Budrevich, N. A. Makhutov, and M. I. Chaevskii, “Modification of surfaces with shape memory materials for obtaining detachable joints,” Probl. Mashinostr. Nadezhnosti Mashin, No. 5, 64–71 (2002).

    Google Scholar 

  6. K. Bhanomurthy and G. B. Kale, “Reactive diffusion between titanium and stainless steel,” J. Mater. Sci. Lett., 12, 1879–1881 (1993).

    Google Scholar 

  7. B. Aleman, “Interface microstructure in diffusion bonding of titanium alloys to stainless steel and low alloy steel,” Mater. Sci. Tech., 9, 633–641 (1993).

    Google Scholar 

  8. G. R. Kamat, “Solid-state diffusion welding of nickel to stainless steel,” Welding J., 67, 44–46 (1988).

    Google Scholar 

  9. P. He, J. Z hang, R. Zhou, and X. Li, “Diffusion bonding technology of a titanium alloy to a stainless steel web with a Ni interlayer,” Mater. Characterization, 43, 287–292 (1999).

    Google Scholar 

  10. G. V. Vstovskii, Fractal Parametrization of Structure in Metals and Alloys, Author's Abstract of Doctorate Thesis [in Russian], Moscow (2001).

  11. V. S. Ivanova, A. S. Balankin, I. K. Bunin, and A. A. Oksogoev, Synergetics and Fractals in Materials Science [in Russian], Nauka, Moscow (1994).

    Google Scholar 

  12. M. I. Chaevskii, Zh. M. Blednova, A. N. Shauro, and D. G. Budrevich, Compound Crankshaft and Method for Connecting Crank Webs to Crankshaft and Pin Necks, RF Patent No. 2199037, MPK 7F 16 C3_12 [in Russian].

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Blednova, Z.M., Budrevich, D.G., Makhutov, N.A. et al. Deposition of Coatings with the Shape Memory Effect on the Surface of Steels by Argon-Arc Facing. Metal Science and Heat Treatment 45, 428–431 (2003). https://doi.org/10.1023/B:MSAT.0000019196.25544.f3

Download citation

  • Issue Date:

  • DOI: https://doi.org/10.1023/B:MSAT.0000019196.25544.f3

Keywords

Navigation