Journal of Dentistry
Volume 34, Issue 10 , Pages 802-810 , November 2006

The influence of montmorillonite clay reinforcement on the performance of a glass ionomer restorative

  • Adam H. Dowling

      Affiliations

    • Department of Metallurgy and Materials, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK
  • ,
  • Artemis Stamboulis

      Affiliations

    • Department of Metallurgy and Materials, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK
  • ,
  • Garry J.P. Fleming

      Affiliations

    • Materials Science Unit, Division of Oral Biosciences, Dublin Dental School & Hospital, Trinity College Dublin, Dublin 2, Ireland
    • Corresponding Author InformationCorresponding author. Tel.: +353 1 612 7371; fax: +353 1 612 7397.

Received 7 March 2006 ,Revised 7 March 2006 ,Accepted 14 March 2006.

References 

  1. Wilson AD, Kent BE, Dentistry . The glass ionomer cement. British Dental Journal. 1972;132:133–135
  2. Smith DC. Development of glass-ionomer cement systems. Biomaterials. 1998;19:467–478
  3. Crisp S, Lewis BG, Wilson AD. Characterisation of glass-ionomer cements. 2. Effect of the powder: liquid ratio on the physical properties. Journal of Dentistry. 1976;4:287–290
  4. Product specification for ChemFil® Superior (Dentsply DeTrey, Kanstanz, Germany).
  5. Mathis RL, Ferracane JL. Properties of a glass-ionomer/resin-composite hybrid material. Dental materials. 1989;5:355–358
  6. Bourke AM, Walls AWG, McCabe JF. Light-activated glass polyalkenoate (ionomer) cements: the setting reaction. Journal of Dentistry. 1992;20:115–120
  7. Feilzer AJ, Kakaboura AI, de Gee AJ, Davidson CL. The influence of water sorption on the development of setting shrinkage stress in traditional and resin-modified glass ionomer cements. Dental Materials. 1995;11:186–190
  8. McCabe JF. Resin-modified glass-ionomers. Biomaterials. 1998;19:521–527
  9. Kobayashi M, Kon M, Miyai K, Asaoka K. Strengthening of glass-ionomer cement by compounding short fibres with CaO–P2O5–SiO2–Al2O3 glass. Biomaterials. 2000;21:2051–2058
  10. Yli-Urpo H, Lassila LVJ, Närhi T, Vallittu PK. Compressive strength and surface characterization of glass ionomer cements modified by particles of bioactive glass. Dental Materials. 2005;21:201–209
  11. Gu YW, Yap AUJ, Cheang P, Koh YL, Khor KA. Development of zirconia-glass ionomer cement composites. Journal of Non-Crystalline Solids. 2005;351:508–514
  12. Lucas ME, Arita K, Nishino M. Toughness, bonding and fluoride-release properties of hydroxyapatite-added glass ionomer cement. Biomaterials. 2003;24(21):3787–3794
  13. American Society for Testing and Materials . Standard test method for plain strain fracture toughness of metallic materials. ASTM E399-90; 1992;pp. 664–6
  14. Usuki A, Kojima Y, Kawasumi M, Okada A, Fukushima Y, Kurauchi T, et al. Synthesis of nylon 6-clay hybrid. Journal of Materials Research. 1994;8:1179–1184
  15. Usuki A, Kojima Y, Kawasumi M, Okada A, Fukushima Y, Kurauchi T, et al. Mechanical properties of nylon 6-clay hybrid. Journal of Materials Research. 1994;8:1185–1190
  16. Biasci L, Aglietto M, Ruggeri G, Ciardelli F. Functionalisation of montmorillonite by methyl methacrylate polymers containing side-chain ammonium cations. Polymer. 1994;35:3296–3304
  17. Alexandre M, Dubois P. Polymer-layered silicate nanocomposites: preparation, properties and uses of a new class of materials. Material Science and Engineering. 2000;28:1–63
  18. Ray SS, Okamoto M. Polymer/layered silicate nanocomposites: a review from preparation to processing. Progress in Polymer Science. 2003;28:1539–1641
  19. Okamoto M. Polymer/layered silicate nanocomposites. Rapra Review Reports 2003;14: Report 163.
  20. Kornmann X, Lindberg H, Berglund LA. Synthesis of epoxy-clay nanocomposites: influence of the nature of the clay on structure. Polymer. 2001;42:1303–1310
  21. Dowling AH. Investigating the effect of nanoclays on the structure and mechanical properties of glass ionomer cement. MSc Thesis. University of Ulster at Jordanstown, Northern Ireland; 2004.
  22. White SN, Yu Z. Compressive and diametral tensile strengths of current adhesive luting agents. Journal of Prosthetic Dentistry. 1993;69:568–572
  23. Weibull W. A statistical distribution function of wide applicability. Journal of Applied Mechanics. 1951;18:293–297
  24. Trustrum K, Jayatilaka ADS. On estimating the Weibull modulus for brittle materials. Journal of Material Science. 1974;14:1080–1084
  25. Ritter JE, Bandyopadhyay N, Jakus K. Statistical reproducibility of the dynamic and static fatigue experiments. Ceramic Bulletin. 1981;60:798–806
  26. Bovis SC, Harrington E, Wilson HJ. Setting characteristics of composite filling materials. British Dental Journal. 1971;131:352–356
  27. Wilson HJ. Elastomeric impression materials. Part 1. The setting material. British Dental Journal. 1966;121:277–283
  28. Thornton ST, Rex A. Modern Physics for Scientists and Engineers. Saunders College Publishing; 1993;
  29. Utracki LA. Clay-containing polymeric nanocomposites. Shropshire, UK: Rapra Technology Limited; 2004;
  30. Fischer H. Polymer nanocomposites: from fundamental research to specific applications. Materials Science and Engineering C. 2003;23:763–772
  31. Tran NH, Dennis GR, Milev AS, Kamali Kannangara GS, Wilson MA, Lamb RN. Interactions of sodium montmorillonite with poly (acrylic acid). Journal of Colloid and Interface Science. 2005;290:392–396
  32. Plant GC, Jones IH, Wilson HJ. Setting characteristics of lining and cementing materials. British Dental Journal. 1972;133:21–24
  33. Jacobsen PH. Working time of polymeric restorative materials. Journal of Dental Research. 1976;55:244–251
  34. Cook WD, Brockhurst P. The oscillating rheometer—what does it measure?. Journal of Dental Research. 1980;59:795–799
  35. Fleming GJP, Kenny SM, Barralet JE. The optimisation of the initial viscosity of an encapsulated glass-ionomer restorative following different mechanical mixing regimes. Journal of Dentistry. 2006;34:155–163

PII: S0300-5712(06)00068-6

doi: 10.1016/j.jdent.2006.03.005

Journal of Dentistry
Volume 34, Issue 10 , Pages 802-810 , November 2006