Dental Materials
Volume 25, Issue 4 , Pages 467-472 , April 2009

Corrosion mechanism of Ti–Cr alloys in solution containing fluoride

  • Shinji Takemoto

      Affiliations

    • Department of Dental Materials Science, Tokyo Dental College, Japan
    • Corresponding Author InformationCorresponding author at: 1-2-2 Masago, Mihama-ku, Chiba 261-8502, Japan. Tel.: +81 43 270 3778; fax: +81 43 270 3780.
  • ,
  • Masayuki Hattori

      Affiliations

    • Department of Dental Materials Science, Tokyo Dental College, Japan
  • ,
  • Masao Yoshinari

      Affiliations

    • Department of Dental Materials Science, Tokyo Dental College, Japan
  • ,
  • Eiji Kawada

      Affiliations

    • Department of Dental Materials Science, Tokyo Dental College, Japan
  • ,
  • Katsuhiko Asami

      Affiliations

    • Institute for Materials Research, Tohoku University, Japan
  • ,
  • Yutaka Oda

      Affiliations

    • Department of Dental Materials Science, Tokyo Dental College, Japan

Received 28 December 2007 ,Revised 22 September 2008 ,Accepted 25 September 2008.

References 

  1. Hanawa T, Ota M. Characterization of surface film formed on titanium in electrolyte using XPS. Appl Surf Sci. 1992;55:269–276
  2. Ong JL, Lucas LC, Raikar GN, Connatser R, Gregory JC. Spectroscopic characterization of passivated titanium in a physiologic solution. J Mater Sci Mater Med. 1995;6:113–119
  3. Hanawa T, Asami K, Asaoka K. Repassivation of titanium and surface oxide film regenerated in simulated bioliquid. J Biomed Mater Res. 1998;40:530–538
  4. Bergman B, Bessing C, Ericson G, Lundquist P, Nilson H, Andersson M. A 2-year follow-up study of titanium crowns. Acta Odontol Scand. 1990;48:113–117
  5. Sutton AJ, Rogers PM. Discoloration of a titanium alloy removable partial denture: a clinical report. J Prosthodont. 2001;10:102–104
  6. Pröbster L, Lin W, Hüttemann H. Effect of fluoride prophylactic agents on titanium surfaces. Int J Oral Maxillofac Implants. 1992;7:390–394
  7. Ozeki K, Oda Y, Sumii T. The influence of fluoride prophylactic agents on the corrosion of titanium and titanium alloy. Shikwa Gakuho. 1996;96:293–304
  8. Oda Y, Kawada E, Yoshinari M, Hasegawa K, Okabe T. The influence of fluoride concentration on the corrosion of titanium and titanium alloys. J J Dent Mater. 1996;15:317–322
  9. Reclaru L, Meyer J-M. Effects of fluorides on titanium and other dental alloys in dentistry. Biomaterials. 1998;19:85–92
  10. Nakagawa M, Matsuya S, Shiraishi T, Ohta M. Effect of fluoride concentration and pH on corrosion behavior of titanium for dental use. J Dent Res. 1999;78:1568–1572
  11. Nakagawa M, Matsuya S, Udoh K. Corrosion behavior of pure titanium and titanium alloys in fluoride-containing solutions. Dent Mater J. 2001;20:305–314
  12. Nakagawa M, Matsuya S, Udoh K. Effect of fluoride and dissolved oxygen concentrations on the corrosion behavior of pure titanium and titanium alloys. Dent Mater J. 2002;21:83–92
  13. Schiff N, Grosgogeat B, Lissac M, Dalard F. Influence of fluoride content and pH on the corrosion resistance of titanium and its alloys. Biomaterials. 2002;23:1995–2002
  14. Noguchi T, Takemoto S, Hattori M, Yoshinari M, Kawada E, Oda Y. Discoloration and dissolution of titanium and titanium alloys with immersion in peroxide- or fluoride-containing solutions. Dent Mater J. 2008;27:117–123
  15. Oda Y, Hattori M, Yoshinari M, Kawada E. Discoloration of titanium and titanium alloys with peroxide and fluoride solution. J Dent Res (Spec Iss B) 2003;82:308 (abstract no. 2380).
  16. Takemoto S, Hattori M, Yoshinari M, Kawada E, Oda Y. Corrosion behavior and surface characterization of Ti-20Cr alloy in a solution containing fluoride. Dent Mater J. 2004;23:379–386
  17. Koike M, Ito M, Okuno O, Kimura K, Takeda O, Okabe TH, et al. Evaluation of Ti–Cr-Cu alloys for dental applications. J Mater Eng Perform. 2005;14:778–783
  18. Asami K, Hashimoto K. X-ray photoelectron spectra of several oxides of iron and chromium. Corros Sci. 1977;17:559–570
  19. Asami K, Hashimoto K, Shimodaira S. XPS determination of compositions of alloy surfaces and surface oxides on mechanically polished iron-chromium alloys. Corros Sci. 1977;17:713–723
  20. Asami K, Chen SC, Habazaki H, Kawashima A, Hashimoto K. A photoelectrochemical and ESCA study of passivity of amorphous nickel-valve metal alloys. Corros Sci. 1990;31:727–732
  21. Asami K, Chen SC, Habazaki H, Hashimoto K. The surface characterization of titanium and titanium-nickel alloys in sulfuric-acid. Corros Sci. 1993;35:43–49
  22. Scofield JH. Hartree–Slater subshell photoionization cross-sections at 1254 and 1487eV. J. Electron Spectrosc Relat Phenom. 1976;8:129–137
  23. Hanawa T. Characterization of surface films formed on titanium in electrolytic solutions. J J Dent Mater. 1989;8:832–844
  24. Trėpanier C, Tabrizian M, Yahia L’H , Bilodeau L, Piron DL. Effect of modification of oxide layer on NiTi stent corrosion resistance. J Biomed Mater Res (Appl Biomater). 1999;43:433–440
  25. Wilhelmsen W, Grande AP. The influence of hydrofluoric acid and fluoride ion on the corrosion and passive behavior of titanium. Electrochim Acta. 1987;32:1469–1472
  26. Takemoto S, Hattori M, Yoshinari M, Kawada E, Oda Y. Corrosion resistance of dental alloys in gargle solutions. J J Soc Dent Mater Dev. 2005;24:31–38
  27. Jang HS, Son WS, Park SB, Kim HI, Kwon YH. Effect of acetic NaF solution on the corrosion behavior of stainless steel orthodontic brackes. Dent Mater J. 2006;25:339–344
  28. Kao CT, Ding SJ, Wang Ck , He H, Chou MY, Huang TH. Comparison of frictional resistance after immersion of metal brackets and orthodontic wires in a fluoride-containing prophylactic agent. Am J Orthod Dentofacial Orthop. 2006;130:568.e1–568.e9
  29. Li X-Y, Akiyama E, Habazaki H, Kawashima A, Asami K, Hashimoto K. Spontaneously passivated films on sputter-deposited Cr–Ti alloys in 6M HCl solution. Corros Sci. 1997;39:935–948

PII: S0109-5641(08)00247-9

doi: 10.1016/j.dental.2008.09.005

Dental Materials
Volume 25, Issue 4 , Pages 467-472 , April 2009