Cyclic fatigue resistance of different nickel-titanium instruments in single and double curvature at room and body temperatures: A laboratory study

Aust Endod J. 2023 Dec;49(3):592-598. doi: 10.1111/aej.12789. Epub 2023 Aug 17.

Abstract

The aim of this study was to compare the cyclic fatigue resistance of nickel-titanium instruments inside single and double-curved canals at different temperatures. 160 HyFlex EDM #20.05 (HEDM), VDW.ROTATE #20.05 and #25.06, Mtwo #25.06 were randomised (n = 10) for the dynamic cyclic fatigue tests according to the curvature (i.e. single and double) at 20° ± 1°C and 35° ± 1°C. The number of cycles to fracture (NCF) was analysed by two-way ANOVA with p < 0.05. Fatigue resistance of all instruments significantly decreased at body temperature in single and double curvatures, except for HEDM in double curvature. The NCF was significantly lower in double curvature than single at both temperatures for all files, except for VDW.ROTATE #20.05 at 35° ± 1°C. Within the study limitations, temperature significantly impaired cyclic fatigue resistance of all files except HEDM #20.05 in double curvature. Similarly, double curvature had a detrimental effect on cyclic fatigue resistance of all files except for VDW.ROTATE #20.05 at body temperature.

Keywords: HyFlex EDM; Mtwo; VDW.ROTATE; body temperature; cyclic fatigue; double curvature; dynamic model.

MeSH terms

  • Body Temperature
  • Dental Alloys
  • Dental Instruments*
  • Equipment Design
  • Equipment Failure
  • Flexural Strength
  • Materials Testing
  • Nickel*
  • Root Canal Preparation
  • Titanium*

Substances

  • Dental Alloys
  • Nickel
  • nitinol
  • Titanium
  • titanium nickelide