In Vitro Evaluation of the Effect of Chemical and Thermal Stress of the Mechanical Properties of Periodontal Curettes under Simulated Conditions of Sharpening Wear

Oral Health Prev Dent. 2017;15(4):379-384. doi: 10.3290/j.ohpd.a38733.

Abstract

Purpose: To determine whether chemical and thermal stress as well as sharpening are aspects that must be considered to determine when a curette has become too weak to be used safely without the threat of breakage.

Materials and methods: A total sample of 35 curette blades was divided into 2 principal groups, control (groups 1 to 3) and experimental (groups 4 to 6). The control group was divided into 3 colour-coded groups of 19 similar curette blades and was only subjected to progressive sharpening wear (not sterilised). The test group included 16 Gracey curette blades that were subjected to various degrees of progressive wear and different numbers of sterilisation cycles in 3 subgroups (subgroup 4 had 5 sterilisation cycles; subgroup 5 had 30 cycles and experimental subgroup 6 had 55 cycles). Using a universal testing machine, all blades were tested for strength until they fractured.

Results: No evidence was found that the simple presence or absence of sterilisation cycles produced a statistically significant difference between the two studied groups (sterilised and not sterilised). However, when comparing the six subgroups that underwent different numbers of sterilisation cycles, the analysis showed that the more sterilisation cycles a curette underwent, the more likely the curette was to fracture (p = 0.047).

Conclusion: Sterilisation by itself does not produce a significant change in the fracture strength, whereas the number of sterilisation cycles clearly weakens the instrument. Sterilisation is a factor to control when evaluating the life of a periodontal curette for the patients' and professionals' safety.

Publication types

  • Evaluation Study

MeSH terms

  • Chemical Phenomena
  • Dental Instruments*
  • Hot Temperature
  • Materials Testing
  • Sterilization*
  • Stress, Mechanical*