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Journal of Dental Research
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Fracture Toughness of Experimental Dental Composites Aged in Ethanol

J.L. Ferracane

Department of Biomaterials and Biomechanics, Oregon Health Sciences University, 611 SW Campus Drive, Portland, Oregon 97201

H.X. Berge

Department of Biomaterials and Biomechanics, Oregon Health Sciences University, 611 SW Campus Drive, Portland, Oregon 97201

Fracture toughness (KIc) is an intrinsic property which may be related to the ability of a restorative material to resist fracture and abrasion. This property may change for a dental composite restorative due to the effects of various oral solvents. The hypothesis to be tested was that aging in ethanol would cause a reduction in the fracture toughness of dental composites, and that the extent of this reduction might be dependent upon certain compositional variables. The fracture toughnesses of three series of experimental composites with various degrees of conversion, filler volume, and percent of silane-treated fillers were compared after the composites were aged for periods of one month and six months in 75% ethanol/water, a solvent which serves as a food-simulating liquid. An unfilled Bis-GMA/TEGDMA resin served as the control. All composites, with the exception of one subjected to a post-light-curing heat treatment, experienced a significant reduction (from 30 to 56%) in KIc after being aged in 75% ethanol for six months. A similar reduction in KIc of 58% for the unfilled resin suggested that the reduction for the composites was due to a weakening of the resin matrix, which facilitated crack propagation. A simultaneous reduction in microhardness was also demonstrated. One month of aging in ethanol also produced large reductions in KIc for specimens with insufficient cure and minimal filler volume, suggesting that the properties of the resin matrix predominated for these composites. Aging in ethanol for one month increased KIc by from 5 to 10% for three partially silanated composites, but further aging caused a large reduction in their resistance to crack propagation. This study verified that the KIc and hardness of Bis-GMA-based composites was reduced after long-term aging in an effective solvent. In addition, insufficient curing and severely compromised filler/matrix adhesion, which caused the properties of the resin matrix to dominate, contributed to a reduction in the fracture toughness of composites.

Key Words: fracture toughness • composite • solvent • aging • physical property

REFERENCES

  • Asmussen E. (1984). Softening of BisGMA-based polymers by ethanol and by organic acids of plaque. Scand J Dent Res 92:257-261.[Medline] [Order article via Infotrieve]
  • Ferracane JL, Marker VA (1992). Solvent degradation and reduced fracture toughness in aged composites. J Dent Res 7:13-19.
  • Ferracane JL, Antonio RC, Matsumoto H. (1987). Variables affecting the KIc of dental composites. J Dent Res 66:1140-1145.
  • Ferracane JL, Condon JR, Suh B. (1992). Effect of filler on degree of conversion (DC) of resins (abstract). J Dent Res 71:598.
  • Halvorson RH, Erickson RL (1993). Effect of silane levels on the DOC of light curable composite resins (abstract). J Dent Res 72:138.
  • Kim KH, Park JH, Imai Y., Kishi T. (1991). Fracture toughness and acoustic emission behavior of dental composite resins. Eng Fract Mech 40:811-819.
  • Kinloch AJ, Williams JG (1980). Crack blunting mechanisms in polymers. J Mater Sci 15:987-996.
  • Lange FF, Radford KC (1971). Fracture energy of an epoxy composite system. J Mater Sci 6:1197-1203.[CrossRef]
  • McKinney JE, Wu W. (1985). Chemical softening and wear of dental composites, J Dent Res 64:1326-1331.
  • Pilliar RM, Vowles R., Williams DT (1987). The effect of environmental aging on the KIc of dental composites. J Dent Res 66:722-726.
  • Spanoudakis J., Young RJ (1984). Crack propagation in a glass particle-filled epoxy resin. Part 1-Effect of particle volume fraction and size. J Mater Sci 19:473-486.[CrossRef]
  • Truong VT, Tyas MJ ( 1988). Prediction of in vivo wear in posterior composite resins: a fracture mechanics approach. Dent Mater 4:318-327.[Medline] [Order article via Infotrieve]
  • Wu W. (1982). Wear mechanisms of dental composite resins. In: Posterior composites. Taylor D, editor. Proceedings of the International Symposium on Posterior Composite Resins. Chapel Hill, NC: University of North Carolina, pp. 127-146.
  • Wu W., McKinney JE (1982). Influences of chemicals on wear of dental composites. J Dent Res 61:1180-1183.
  • Young RJ, Beaumont PWR (1975). Failure of brittle polymers by slow crack growth. Part 2. Failure processes in a silica particle-filled epoxy resin composite. J Mater Sci 10:1343-1350.

Journal of Dental Research, Vol. 74, No. 7, 1418-1423 (1995)
DOI: 10.1177/00220345950740071501


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This Article
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What's this?