Journal of Dentistry
Volume 37, Issue 2 , Pages 141-148 , February 2009

Numerical investigation of macro- and micro-mechanics of a ceramic veneer bonded with various cement thicknesses using the typical and submodeling finite element approaches

  • Heng-Liang Liu

      Affiliations

    • Graduate Institute of Mechanical Engineering, Chang Gung University, 259 Wen-Hwa 1st Road, Kwei-Shan, Tao-Yuan 33302, Taiwan
  • ,
  • Chun-Li Lin

      Affiliations

    • Department of Mechanical Engineering, Chang Gung University, 259 Wen-Hwa 1st Road, Kwei-Shan, Tao-Yuan 33302, Taiwan
    • Corresponding Author InformationCorresponding author. Tel.: +886 3 2118800x5759; fax: +886 3 2118050.
  • ,
  • Ming-Tsung Sun

      Affiliations

    • Department of Mechanical Engineering, Chang Gung University, 259 Wen-Hwa 1st Road, Kwei-Shan, Tao-Yuan 33302, Taiwan
  • ,
  • Yen-Hsiang Chang

      Affiliations

    • Dental Department, Taoyuan Medical Center, Chang Gung Memorial Hospital, 123 Ding-Hu Road, Kwei-Shan, Tao-Yuan 33378, Taiwan

Received 25 June 2008 ,Revised 11 October 2008 ,Accepted 27 October 2008.

References 

  1. Liu PR. A panorama of dental CAD/CAM restorative systems. Compendium of Continuing Education in Dentistry. 2005;26:507–512
  2. Swift EJ, Friedman MJ. Critical appraisal. Porcelain veneer outcomes. Part I. Journal of Esthetic and Restorative Dentistry. 2006;18:54–57
  3. Sieweke M, Salomon-Sieweke U, Zofel P, Stachniss V. Longevity of oroincisal ceramic veneers on canines—a retrospective study. Journal of Adhesive Dentistry. 2000;2:229–234
  4. Meijering AC, Creugers NH, Roeters FJ, Mulder J. Survival of three types of veneer restorations in a clinical trial: a 2.5-year interim evaluation. Journal of Dentistry. 1998;26:563–568
  5. Shaini FJ, Shortall AC, Marquis PM. Clinical performance of porcelain laminate veneers. A retrospective evaluation over a period of 6.5 years. Journal of Oral Rehabilitation. 1997;24:553–559
  6. Ishikawa K, Fukushima M, Iwaku M. Adaptation of ceramic inlays and laminate veneers using dental CAD/CAM system. Adhesive Dentistry. 2006;24:179–184
  7. Scherrer SS, Rijk WG, Belser UC, Meyer JM. Effect of cement film thickness on the fracture resistance of a machinable glass–ceramic. Dental Material. 1994;10:172–177
  8. Cho S, Chang W, Lim B, Lee Y. Effect of die spacer thickness on shear bond strength of porcelain laminate veneers. Journal of Prosthetic Dentistry. 2006;95:201–208
  9. Prakki A, Cilli R, Da Costa AU, De Paiva Gonçalves SE, Lia Mondelli RF, Pereira JC. Effect of resin luting film thickness on fracture resistance of a ceramic cemented to dentin. Journal of Prosthodontics. 2007;16:172–178
  10. Peumans M, Van Meerbeek B, Lambrechts P, Vanherle G. Porcelain veneers: a review of the literature. Journal of Dentistry. 2000;28:163–177
  11. Stacey GD. A shear stress analysis of the bonding of porcelain veneers to enamel. Journal of Prosthetic Dentistry. 1993;70:395–402
  12. Van Landuyt KL, Kanumilli P, De Munck J, Peumans M, Lambrechts P, Van Meerbeek B. Bond strength of a mild self-etch adhesive with and without prior acid-etching. Journal of Dentistry. 2006;34:77–85
  13. Weerasinghe DS, Nikaido T, Wettasinghe KA, Abayakoon JB, Tagami J. Micro-shear bond strength and morphological analysis of a self-etching primer adhesive system to fluorosed enamel. Journal of Dentistry. 2005;33:419–426
  14. Gresnigt MM, Ozcan M. Fracture strength of direct versus indirect laminates with and without fiber application at the cementation interface. Dental Material. 2007;23:927–933
  15. 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
  16. Zarone F, Apicella D, Sorrentino R, Ferro V, Aversa R, Apicella A. Influence of tooth preparation design on the stress distribution in maxillary central incisors restored by means of alumina porcelain veneers: a 3D-finite element analysis. Dental Material. 2005;21:1178–1188
  17. Troedson M, Derand T. Effect of margin design, cement polymerization, and angle of loading on stress in porcelain veneers. Journal of Prosthetic Dentistry. 1999;82:518–524
  18. Magne P, Versluis A, Douglas WH. Effect of luting composite shrinkage and thermal loads on the stress distribution in porcelain laminate veneers. Journal of Prosthetic Dentistry. 1999;81:335–344
  19. Moon PC, Sluyk SR. Finite element analysis of porcelain and composite veneers. Journal of Dental Research. 1989;68:271
  20. Advanced analysis techniques guide. Submodeling. Release 8.0 documentation for ANSYS.
  21. Simmons CA, Meguid SA, Pilliar RM. Mechanical regulation of localized and appositional bone formation around bone-interfacing implants. Journal of Biomedical Materials Research Part A. 2001;55:63–71
  22. Liu HL, Lin CL, Sun MT, Chang YH, Liu PR. Damage accumulation simulations in the adhesive of enamel-ceramic interface using the FE submodeling and the element deactivation approaches. Journal of Adhesive Dentistry; in press.
  23. Ash MM, Nelson SJ. The permanent maxillary incisors. Wheeler's dental anatomy, physiology and occlusion. 7th ed.. Philadelphia: WB Saunders Co.; 1993;p. 128–149
  24. Craig RG, Peyton FA, Johnson DW. Compressive properties of enamel, dental cements, and gold. Journal of Dental Research. 1961;40:936–945
  25. Seghi RR, Denry I, Brajevic F. Effects of ion exchange on hardness and fracture toughness of dental ceramics. The International Journal of Prosthodontics. 1992;5:309–314
  26. Boresi AP, Schmidt RJ. Inelastic material behavior. Advanced mechanics of materials. 6th ed.. New York: John Wiley & Sons; 2003;p.104–146
  27. Peumans M, De Munck J, Fieuws S, Lambrechts P, Vanherle G, Van Meerbeek B. A prospective ten-year clinical trial of porcelain veneers. Journal of Adhesive Dentistry. 2004;6:65–76
  28. Christensen GJ. Clinical and research advancements in cast-gold restorations. Journal of Prosthetic Dentistry. 1971;25:62–68
  29. American Dental Association Specification no. 8. Journal of American Dental Association 1978;57:121–3.
  30. Cormier NG, Smallwood BS, Sinclair GB, Meda G. Aggressive submodelling of stress concentrations. International Journal for Numerical Methods in Engineering. 1999;46:889–909
  31. Misra A, Spencer P, Marangos O, Wang Y, Katz JL. Micromechanical analysis of dentin/adhesive interface by the finite element method. Journal of Biomedical Materials Research Part B: Applied Biomaterials. 2004;15:56–65
  32. Gupta S, van der Helm FC, van Keulen F. Stress analysis of cemented glenoid prostheses in total shoulder arthroplasty. Journal of Biomechanics. 2004;37:1777–1786
  33. Gupta S, van der Helm FC, van Keulen F. The possibilities of uncemented glenoid component—a finite element study. Clinical Biomechanics. 2004;19:292–302

PII: S0300-5712(08)00290-X

doi: 10.1016/j.jdent.2008.10.009

Journal of Dentistry
Volume 37, Issue 2 , Pages 141-148 , February 2009