Dental Materials
Volume 24, Issue 1 , Pages 28-33 , January 2008

The effect of surface modifications on titanium to enable titanium–porcelain bonding

  • Manoel G. Troia Jr.

      Affiliations

    • Department of Prosthodontics, Araras Dentistry School, Herminio Ometto University, Uniararas, Rua Ipiranga 1034/12, CEP: 13400-480 Piracicaba, SP, Brazil
    • Corresponding Author InformationCorresponding author. Tel.: +55 21 19 21065376; fax: +55 21 19 34332377.
  • ,
  • Guilherme E.P. Henriques

      Affiliations

    • Department of Prosthodontics, Piracicaba Dentistry School, Campinas State University, Unicamp, Brazil
  • ,
  • Marcelo F. Mesquita

      Affiliations

    • Department of Prosthodontics, Piracicaba Dentistry School, Campinas State University, Unicamp, Brazil
  • ,
  • Wagner S. Fragoso

      Affiliations

    • Department of Prosthodontics, Piracicaba Dentistry School, Campinas State University, Unicamp, Brazil

Received 20 February 2006 ,Revised 6 January 2007 ,Accepted 11 January 2007.

References 

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  3. Wang RR, Fenton A. Titanium for prosthodontics applications: a review of the literature. Quintess Int. 1996;27:401–408
  4. Hautaniemi JÁ, Hero H, Juhanoja JT. On the bonding of porcelain on titanium. J Mater Sci. 1992;3:186–191
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  18. Reyes MJ, Oshida Y, Andres CJ, Barco T, Hovijitra S, Brown D. Titanium–porcelain system. Part III. Effects of surface modification on bond strengths. Biomed Mater Eng. 2001;11(2):117–136
  19. German Standard Institution . DIN 13. 927 metal–ceramic system. Berlin: Beuth; 1990;
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  21. Troia JRMG, Henriques GEP, Nóbilo MAA, Mesquita MF. The effect of thermal cycling on the bond strength of low-fusing porcelain to commercially pure titanium and titanium–aluminium–vanadium alloy. Dent Mater. 2003;19(8):790–796

PII: S0109-5641(07)00043-7

doi: 10.1016/j.dental.2007.01.009

Dental Materials
Volume 24, Issue 1 , Pages 28-33 , January 2008