Roda-Casanova Victor, Pérez-González Antonio, Zubizarreta-Macho Alvaro, Faus-Matoses Vicente
Department of Mechanical Engineering and Construction, Universitat Jaume I, 12071 Castelló de la Plana, Spain.
Department of Dentistry, Alfonso X el Sabio University, 28691 Madrid, Spain.
J Clin Med. 2022 May 8;11(9):2642. doi: 10.3390/jcm11092642.
In this article, the effects of cross-section and pitch on the mechanical response of NiTi endodontic files is studied by means of finite element analyses. The study was conducted over a set of eight endodontic rotary files, whose geometry was obtained from combinations of two cross-sections (square and triangular) and four pitches. Each file was subjected to bending and torsional analyses, simulating the testing conditions indicated in the ISO 3630 Standard, in order to assess their stiffness and mechanical strength. The results indicate that endodontic files with a square cross-section have double the stiffness of those with triangular cross-sections, both in terms of bending and torsion. For both loading modes, endodontic files with a triangular cross-section can undergo larger deformations before overload failure than those with a square cross-section: up to 20% more in bending and 40% in torsion. Moreover, under equivalent boundary conditions, endodontic files with triangular cross-sections present a higher fatigue life than those with square cross-sections: up to more than 300% higher for small pitches. The effect of pitch on the stiffness and strength of the file is smaller than that of the cross-section shape, but smaller pitches could be beneficial when using a triangular cross-section, as they increase the bending flexibility, fatigue life, and torsion stiffness. These results suggest a clinical recommendation for the use of files with a triangular-shaped cross-section and a small pitch in order to minimize ledging and maximize fatigue life. Finally, in this study, we reveal the sensitivity of the orientation of files with respect to the bending direction, which must be taken into account when designing, reporting, and interpreting test results under such loading conditions.
在本文中,通过有限元分析研究了横截面和螺距对镍钛根管锉力学响应的影响。该研究针对一组八支根管旋转锉展开,其几何形状由两种横截面(方形和三角形)与四种螺距的组合而成。对每支锉进行弯曲和扭转分析,模拟ISO 3630标准中规定的测试条件,以评估其刚度和机械强度。结果表明,方形横截面的根管锉在弯曲和扭转方面的刚度是三角形横截面根管锉的两倍。对于两种加载模式,三角形横截面的根管锉在过载失效前可比方形横截面的根管锉承受更大的变形:弯曲时多20%,扭转时多40%。此外,在等效边界条件下,三角形横截面的根管锉比方形横截面的根管锉具有更高的疲劳寿命:小螺距时高出300%以上。螺距对锉的刚度和强度的影响小于横截面形状的影响,但使用三角形横截面时较小的螺距可能有益,因为它们可增加弯曲柔韧性、疲劳寿命和扭转刚度。这些结果为使用三角形横截面和小螺距的锉提供了临床建议,以便将台阶形成降至最低并最大化疲劳寿命。最后,在本研究中,我们揭示了锉相对于弯曲方向的取向敏感性,在设计、报告和解释此类加载条件下的测试结果时必须予以考虑。