Journal of Dentistry
Volume 34, Issue 3 , Pages 195-206 , March 2006

The influence of surface modification techniques on the performance of a Y-TZP dental ceramic

  • Andrew R. Curtis

      Affiliations

    • Biomaterials Unit, School of Dentistry, University of Birmingham, St Chad's Queensway, Birmingham B4 6NN, UK
  • ,
  • Adrian J. Wright

      Affiliations

    • School of Chemistry, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK
  • ,
  • Garry J.P. Fleming

      Affiliations

    • Department of Restorative Dentistry & Periodontology, Dublin Dental School & Hospital, Lincoln Place, Dublin 2, Ireland
    • Corresponding Author InformationCorresponding author. Tel.: +353 1 612 7371; fax: +353 1 612 7297.

Received 31 March 2005 ,Revised 1 June 2005 ,Accepted 2 June 2005.

References 

  1. Lawn BR. Physics of fracture. Journal of the American Ceramic Society. 1983;66:83–91
  2. Doremus RH. Review: bioceramics. Journal of Materials Science. 1992;27:285–297
  3. Peterson M, Wuttiphan S, Lawn BR, Chyung K. Role of microstructure on contact damage and strength degradation of micaceous glass–ceramics. Dental Materials. 1998;14:80–89
  4. Lawn BR, Deng Y, Lloyd IK, Janal MN. Materials design of ceramic-based layer structures for crowns. Journal of Dental Research. 2002;81:433–438
  5. Kramer N, Frankenberger R, Pelka M, Petschelt A. IPS Empress inlays and onlays after four years—a clinical study. Journal of Dentistry. 1999;27:325–331
  6. Scherrer SS, Kelly RJ, Quin GD, Xu K. Fracture toughness (KIc) of a dental porcelain determined by fractographic analysis. Dental Materials. 1999;15:342–348
  7. Jung YG, Peterson IM, Kim DK, Lawn BR. Lifetime limiting strength degradation from contact fatigue in dental ceramics. Journal of Dental Research. 2000;79:722–731
  8. Lawn BR, Deng Y, Thompson VP. Use of contact testing in the characterization and design of all-ceramic crown-like layer structures: a review. Journal of Prosthetic Dentistry. 2001;86:495–510
  9. Chevalier J, Olagnon C, Fantozzi G. Subcritical crack propagation in 3Y-TZP ceramics: static and cyclic fatigue. Journal of the American Ceramic Society. 1999;82:3128–3129
  10. Wakabayashi N, Anusavice KJ. Crack initiation modes in bilayered alumina-porcelain disks as a function of core/veneer thickness ratio and supporting substrate stiffness. Journal of Dental Research. 2000;79:1398–1404
  11. Guazzato M, Albakry M, Ringer SP, Swain MV. Strength, fracture toughness and microstructure of a selection of all-ceramic materials, Part II: zirconia-based dental ceramics. Dental Materials. 2004;20:449–456
  12. Rizkalla AS, Jones DW. Mechanical properties of commercial high strength ceramic core materials. Dental Materials. 2004;20:207–212
  13. Rauchs G, Fett T, Munz D, Oberacker R. Tetragonal-to-monoclinic phase transformation in CeO2-stabilised zirconia under uniaxial loading. Journal of the European Ceramic Society. 2001;21:2229–2241
  14. Aza AHD, Chevalier J, Fantozzi G, Schehl M, Torrecillas R. Crack growth resistance of alumina, zirconia and zirconia toughened alumina ceramics for joint prostheses. Biomaterials. 2002;23:937–945
  15. Srdic VV, Radonjic L. Transformation toughening of sol–gel derived alumina–zirconia composites. Journal of the American Ceramic Society. 1997;80:2056–2060
  16. Swain MV. Limitation of maximum strength of zirconia-toughened ceramics by transformation toughening increment. Journal of the American Ceramic Society. 1985;68:C97–C99
  17. Casellas D, Feder A, Llanes L, Anglada M. Fracture toughness and mechanical strength of Y-TZP/PSZ ceramics. Scripta Mater. 2001;45:213–220
  18. Llusar M, Rodrigues C, Labrincha J, Flores M, Monros G. Reinforcement of single-firing ceramic glazes with the addition of polycrystalline tetragonal zirconia (3Y-TZP) or zircon. Journal of the European Ceramic Society. 2002;22:639–652
  19. Guazzato M, Albakry M, Ringer S, Swain M. Strength, fracture toughness and microstructure of a selection of all-ceramic materials. Part I. Pressable and alumina glass-infiltrated ceramics. Dental Materials. 2004;20:441–448
  20. Swain MV, Garvie RC, Hannink RHJ. Influence of thermal decomposition on the mechanical properties of magnesia stabilized cubic zirconia. Journal of the American Ceramic Society. 1983;66:358–362
  21. Masaki T. Mechanical properties of toughened ZrO2–Y2O3 ceramics. Journal of the American Ceramic Society. 1986;69:638–640
  22. Guazzato M, Albakry M, Quach L, Swain MV. Influence of grinding, sandblasting, polishing and heat treatment on the flexural strength of a glass-infiltrated alumina-reinforced dental ceramic. Biomaterials. 2004;25:2153–2160
  23. Gupta TK. Strengthening by surface damage in metastable tetragonal zirconia. Journal of the American Ceramic Society. 1980;63:C117
  24. Green DJ. A technique for introducing surface compression into zirconia ceramics. Journal of the American Ceramic Society. 1983;66:C178–C179
  25. Kosmac T, Oblak C, Jevnikar P, Funduk N, Marion L. The effect of surface grinding and sandblasting on flexural strength and reliability of Y-TZP zirconia ceramic. Dental Materials. 1999;15:426–433
  26. Maksoud TMA, Morgan JE, Fox TG, Scott JA. Grinding of ceramics: the effect on their strength properties. Journal of Materials Processing and Technology. 1994;43:65–75
  27. Dyson JE, Darvell BW. Discharge of lubricant from air-turbine handpieces. British Dental Journal 2005;198:637–40.
  28. Timoshenko S, Woinowsky-Kreiger S. Symmetrical bending of circular plates. Theory of plates and shells. 2nd ed. New York: McGraw-Hill; 1959;p. 87–121
  29. Product Specification, 3M ESPE, Seefeld, Germany.
  30. Weibull W. A statistical distribution function of wide applicability. Journal of Applied Mechanics. 1951;18:293–297
  31. Broccacini AR, Winkler V. Fracture toughness of Al2O3-platelet reinforced glass matrix composites. Composites A. 2002;33:125–131
  32. McColm IJ. Cracked indents-friend or foe? Their use in toughness and brittleness characterization. Ceramic hardness. New York: Plenum Press; 1990;[chapter 5]
  33. Casellas D, Cumbrera FL, Forsling W, Anglada M. On the transformation toughening of Y-ZrO2 ceramics with mixed Y-TZP/PSZ microstructures. Journal of the European Ceramic Society. 2001;21:765–777
  34. Guazzato M, Albakry M, Swain MV, Ironside J. Mechanical properties of in-ceram alumina and in-ceram zirconia. International Journal of Prosthetics. 2002;15:339–346
  35. Sherrill GA, O'Bien J. Transverse strength of aluminous and feldspathic porcelain. Journal of Dental Research. 1974;53:683–690
  36. Morena M, Beaudreau GM, Lockwood PE, Evans AL. Fatigue of dental ceramics in a simulated oral environment. Journal of Dental Research. 1986;65:993–997
  37. Fleming GJP, Jandu HS, Nolan L, Shaini FJ. The influence of alumina abrasion and cement lute on the strength of a porcelain laminate veneering material. Journal of Dentistry. 2004;32:67–74
  38. Addison O, Fleming GJP, Marquis PM. The effect of thermocycling on the strength of porcelain laminate veneer (PLV) materials. Dental Materials. 2003;19:291–297
  39. Michalske JJ, Freiman SW. A molecular interpretation of stress corrosion in silica. Nature. 1982;295:511–512
  40. Sato T, Ohtaki S, Endo T, Shimada M. Transformation of yttria-doped tetragonal ZrO2 polycrystals by annealing under controlled humidity conditions. Journal of the American Ceramic Society. 1985;68:C320–C322
  41. Yoshimura M, Noma T, Kawabata K. Role of H2O on the degradation process of Y-TZP. Journal of Materials Science (Letters). 1987;6:465–467
  42. Barinov SM, Ivanov NV, Orlov SV. Dynamic fatigue of alumina ceramics in water-containing environment. Ceramics International. 1998;24:421–425
  43. Guazzato M, Albakry M, Quach L, Swain MV. Influence of grinding, sandblasting, polishing and heat treatment on the flexural strength of a glass-infiltrated alumina-reinforced dental ceramic. Biomaterials. 2004;25:2153–2160
  44. Wassel RW, McCabe JF, Walls AWK. Wear characteristics in a two-body wear test. Dental Materials. 1994;10:269–274
  45. Chevalier J, Olagnon C, Cales B. Crack propagation behaviour in Y-TZP ceramics. Journal of the American Ceramic Society. 1995;78:1889–1894
  46. Albakry M, Guazzato M, Swain M. Effect of sandblasting, grinding, polishing and glazing on the flexural strength of two pressable all-ceramic dental materials. Journal of Dentistry. 2003;32:91–99

PII: S0300-5712(05)00120-X

doi: 10.1016/j.jdent.2005.06.006

Journal of Dentistry
Volume 34, Issue 3 , Pages 195-206 , March 2006