Effect of Long-Term Brushing on Deflection, Maximum Load, and Wear of Stainless Steel Wires and Conventional and Spot Bonded Fiber-Reinforced Composites

Int J Mol Sci. 2019 Nov 30;20(23):6043. doi: 10.3390/ijms20236043.

Abstract

Fiber-reinforced composite (FRC) retainers are an aesthetic alternative to conventional Stainless Steel splints. They are generally used with a full bonded technique, but some studies demonstrated that they could be managed with a spot bonding technique to significantly decrease their rigidity. In order to propose this FRC spot bonding technique for clinical use, the aim of this study was to evaluate mechanical properties and surface wear of fibers left uncovered. Tests were made by simulating tooth brushing, comparing FRC spot bonding technique splints with stainless steel and FRC traditional technique splints. Specimens were tested both at 0.1 mm of deflection and at maximum load, showing higher values of rigidity for the FRC full bonded technique. After tooth brushing, no significant reduction in values at 0.1 mm deflection was reported, while we found a similar reduction in these values for the Stainless Steel and FRC spot bonding technique at maximum load, and no significant variation for the FRC full bonded technique. SEM images after tooth brushing showed wear for FRC fibers left uncovered, while no relevant wear signs in metal and conventional FRC fibers were noticed. Results showed that FRC spot bonding technique has advantages in mechanical properties when compared to the FRC traditional full bonding technique, also after tooth brushing. However, the surface wear after tooth brushing in the FRC spot bonding technique is considerable and other tests must be performed before promoting this technique for routine clinical use.

Keywords: FRC; bonding; brushing; composite; deflection; fiber; load; mechanical; reinforced; spot; technique; wear.

MeSH terms

  • Composite Resins / analysis*
  • Composite Resins / chemical synthesis
  • Dental Bonding / methods
  • Dental Materials / analysis*
  • Dental Materials / chemistry
  • Humans
  • Materials Testing / methods
  • Mineral Fibers / analysis*
  • Stainless Steel / analysis*
  • Stress, Mechanical
  • Surface Properties

Substances

  • Composite Resins
  • Dental Materials
  • Mineral Fibers
  • Stainless Steel