Page 290 - УДК
P. 290

290

               13.  KM  S.,  AC.  F.  Anodic  polarization  behavior  of  Ti-Ni  and  Ti-6A1-4V  in

                      simulated physiological solutions // J. Dent. Res. 1980. Vol. 59, № 10. P. 150–

                      1595.

               14.  K. O., C.M. W. Shape Memory Materials. Cambridge, Mass, USA: Cambridge

                      University Press, 1998. 300 p.

               15.  Oshida Y. et al. Biological and Chemical Evaluation of TiNi Alloys // Martensitic

                      Transformations. Trans Tech Publications, 1991. Vol. 56. P. 705–710.

               16.  Shabalovskaya  S.A.  Physicochemical  and  biological  aspects  of  Nitinol  as  a

                      biomaterial // Int. Mater. Rev. Taylor & Francis, 2001. Vol. 46, № 5. P. 233–250.

               17.  Lekston Z., Drugacz J., Morawiec H. Application of superelastic NiTi wires for

                      mandibular distraction // Mater. Sci. Eng. A. Elsevier, 2004. Vol. 378, № 1–2. P.

                      537–541.

               18.  Rondelli  G.  Corrosion  resistance  tests  on  NiTi  shape  memory  alloy  //

                      Biomaterials. 1996. Vol. 17. P. 2003–2008.

               19.  Rondelli G., Vicentini B. Localized corrosion behavior in simulated human body

                      fluids of commercial Ni-Ti orthodontic wires // Biomaterials. 1999. Vol. 20. P.

                      785–792.

               20.  Yokoyama K. et al. Degradation and fracture of Ni–Ti superelastic wire in an


                      oral cavity // Biomaterials. Elsevier, 2001. Vol. 22, № 16. P. 2257–2262.
               21.  Yokoyama  K.  et  al.  Fracture  of  nickel–titanium  superelastic  alloy  in  sodium


                      hypochlorite solution // Mater. Sci. Eng. A. Elsevier, 2004. Vol. 369, № 1–2. P.
                      43–48.


               22.  Cheng Y., Cai W., Zhao L.C. Effects of Cl− ion concentration and pH on the
                      corrosion properties of NiTi alloy in NaCl solution // J. Mater. Sci. Lett. 2003.


                      Vol. 22, № 3. P. 239–240.

               23.  Huang H.-H. et al. Ion release from NiTi orthodontic wires in artificial saliva

                      with various acidities // Biomaterials. Elsevier, 2003. Vol. 24, № 20. P. 3585–

                      3592.

               24.  Wang J. et al. Stress corrosion cracking of NiTi in artificial saliva // Dent. Mater.

                      Elsevier, 2007. Vol. 23, № 2. P. 133–137.
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