Dental Materials
Volume 25, Issue 7 , Pages 829-836 , July 2009

Multiple correlations of material parameters of light-cured dental composites

  • Jianying Li

      Affiliations

    • Minnesota Dental Research Center for Biomaterials and Biomechanics, School of Dentistry, University of Minnesota, MN, USA
  • ,
  • Haiyan Li

      Affiliations

    • Minnesota Dental Research Center for Biomaterials and Biomechanics, School of Dentistry, University of Minnesota, MN, USA
  • ,
  • Alex S.L. Fok

      Affiliations

    • Minnesota Dental Research Center for Biomaterials and Biomechanics, School of Dentistry, University of Minnesota, MN, USA
    • Corresponding Author InformationCorresponding author.
  • ,
  • David C. Watts

      Affiliations

    • School of Dentistry, University of Manchester, Manchester, UK

Received 12 January 2009 ,Revised 16 March 2009 ,Accepted 16 March 2009.

References 

  1. Versluis A, Tantbirojn D, Pintado MR, DeLong R, Douglas WH. Residual shrinkage stress distributions in molars after composite restoration. Dental Materials. 2004;20:554–564
  2. El Hejazi AA, Watts DC. Creep and visco-elastic recovery of cured and secondary-cured composites and resin-modified glass-ionomers. Dental Materials. 1999;15:138–143
  3. Silikas N, Eliades G, Watts DC. Light intensity effects on resin-composite degree of conversion and shrinkage strain. Dental Materials. 2000;16:292–296
  4. Kleverlaan CJ, Feilzer AJ. Polymerization shrinkage and contraction stress of dental resin composites. Dental Materials. 2005;21:1150–1157
  5. Park JW, Ferracane JL. Measuring the residual stress in dental composites using a ring slitting method. Dental Materials. 2005;21:882–889
  6. Dauvillier BS, Hübsch PF, Aarnts MP, Feilzer AJ. Modeling of viscoelastic behavior of dental chemically activated resin composites during curing. Journal of Biomedical Materials Research. 2001;58:16–26
  7. Loshaek S, Fox TG. Cross-linked polymers. I. Factors influencing the efficiency of cross-linking in copolymers of methyl methacrylate and glycol dimethacrylates. Journal of the American Chemical Society. 1953;75:3544–3550
  8. Rueggeberg F, Tamareselvy K. Resin cure determination by polymerization shrinkage. Dental Materials: Official Publication of the Academy of Dental Materials. 1995;11:265–268
  9. Dewaele M, Truffier-Boutry D, Devaux J, Leloup G. Volume contraction in photocured dental resins: the shrinkage-conversion relationship revisited. Dental Materials. 2006;22:359–365
  10. Chen YC, Ferracane JL, Prahl SA. A pilot study of a simple photon migration model for predicting depth of cure in dental composite. Dental Materials. 2005;21:1075–1086
  11. Silva FF, Mendes LC, Ferreira M, Benzi MR. Degree of conversion versus the depth of polymerization of an organically modified ceramic dental restoration composite by Fourier transform infrared spectroscopy. Journal of Applied Polymer Science. 2007;104:325–330
  12. Versluis A, Tantbirojn D, Douglas WH. Distribution of transient properties during polymerization of a light-initiated restorative composite. Dental Materials. 2004;20:543–553
  13. Uhl A, Mills RW, Vowles RW, Jandt KD. Knoop hardness depth profiles and compressive strength of selected dental composites polymerized with halogen and LED light curing technologies. Journal of Biomedical Materials Research. 2002;63:729–738
  14. Ferracane JL, Berge HX, Condon JR. In vitro aging of dental composites in water—effect of degree of conversion, filler volume, and filler/matrix coupling. Journal of Biomedical Materials Research. 1998;42:465–472
  15. Ferracane JL, Mitchem JC, Condon JR, Todd R. Wear and marginal breakdown of composites with various degrees of cure. Journal of Dental Research. 1997;76:1508–1516
  16. McMurray J. Fundamentals of Organic Chemistry. 1986;[Brooks/Cole]
  17. Satterthwaite J. Shrinkage-stress kinetics of photopolymerised resin-composites. Ph.D. Thesis. School of Dentistry—University of Manchester; 2006.
  18. Sun Z, Lyons JS, McNeill SR. Measuring microscopic deformations with digital image correlation. Optics and Lasers in Engineering. 1997;27:409–428
  19. Li J, Fok AS, Satterthwaite J, Watts DC. Measurement of the full-field polymerization shrinkage and depth of cure of dental composites using digital image correlation. Dental Materials. 2009;25:582–588
  20. Genovese A, Shanks RA. Time–temperature creep behaviour of poly(propylene) and polar ethylene copolymer blends. Macromolecular Materials and Engineering. 2007;292:184–196
  21. Beatty MW, Swartz ML, Moore BK, Phillips RW, Roberts TA. Effect of crosslinking agent content, monomer functionality, and repeat unit chemistry on properties of unfilled resins. Journal of Biomedical Materials Research. 1993;27:403–413
  22. Obici AC, Sinhoreti MAC, Frollini E, Sobrinho LC, de Goes MF, Henriques GEP. Monomer conversion at different dental composite depths using six light-curing methods. Polymer Testing. 2006;25:282–288
  23. Rosen S. Fundamental principles of polymeric materials. 2nd edition. New York: John Wiley & Sons, Inc.; 1993;
  24. Marghalani HY, Al-Jabab AS. Compressive creep and recovery of light-cured packable composite resins. Dental Materials. 2004;20:600–610
  25. Mindel MJ, Brown N. Creep and recovery of polycarbonate. Journal of Materials Science. 1973;8:863–870
  26. Lai J, Bakker A. Non-linear creep and recovery behaviour of high-density polyethylene. Scripta Metallurgica et Materialia. 1993;28:1447–1452
  27. Ladouce L, Perez J, Vassoille R, Vigier G. Non-linear creep behaviour of PET. Journal of Materials Science. 1994;29:5399–5406
  28. Hristova J, Minster J. Filler fraction effect on creep response of crosslinked polyester matrix with mineral filler. Journal of Applied Polymer Science. 2003;89:3329–3335
  29. Johnson KL. Correlation of indentation experiments. Journal of the Mechanics and Physics of Solids. 1970;18:115–126
  30. Marshall DB, Lawn BR, Evans AG. Elastic/plastic indentation damage in ceramics: the lateral crack system. Journal of the American Ceramic Society. 1982;65:561–566
  31. Baltá Calleja FJ, Giri L, Ward IM, Cansfield DLM. Microstructure of bulk crystallized linear polyethylene: correlation of microhardness and yield stress. Journal of Materials Science. 1995;30:1139–1143
  32. Kim KH, Ong JL, Okuno O. The effect of filler loading and morphology on the mechanical properties of contemporary composites. Journal of Prosthetic Dentistry. 2002;87:642–649

PII: S0109-5641(09)00163-8

doi: 10.1016/j.dental.2009.03.011

Dental Materials
Volume 25, Issue 7 , Pages 829-836 , July 2009