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Numeric comparison of the static mechanical behavior between ProFile GT and ProFile GT series X rotary nickel-titanium files.

机译:ProFile GT和ProFile GT系列X旋转镍钛锉之间静态机械性能的数值比较。

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摘要

INTRODUCTION: This article aims to evaluate how different superelastic nickel-titanium (NiTi) alloys determine the static mechanical performance of endodontic files during bending and torsion. METHODS: Two NiTi rotary instruments with similar geometries and equal cross sections, ProFile GT (GT) and a GT Series X (GTX), were selected. The latter file is made from M-Wire, a NiTi alloy that, according to its manufacturer, has been thermomechanically processed to have larger flexibility at body temperature. The mechanical response was studied for a series of static bending and torsional loads by using finite element (FE) models. The materials were characterized according to previously published stress-strain curves. RESULTS: For the same load and boundary conditions, the GTX material significantly increased the instrument's performance. For instance, the deflection for a 1N force at the tip of the file was found to be 28.5% larger for the GTX file, whereas the maximum stress decreased 13.2%. CONCLUSIONS: Although not fully reflective of the instrument's behavior in a dynamic rotation intracanal system, the static results showed that the GTX file is more flexible and capable of stress relief at the most critical sections than the GT file, suggesting that it has a lower risk of fracture inside the root canals during its clinical use.
机译:简介:本文旨在评估不同的超弹性镍钛(NiTi)合金如何确定牙髓锉在弯曲和扭转过程中的静态机械性能。方法:选择了两种具有相似几何形状和相同横截面的NiTi旋转仪,即ProFile GT(GT)和GT Series X(GTX)。后者由M-Wire制成,这是一种NiTi合金,根据其制造商的说法,该材料经过热机械加工,在体温下具有更大的柔韧性。使用有限元(FE)模型研究了一系列静态弯曲和扭转载荷的机械响应。根据先前公布的应力-应变曲线对材料进行表征。结果:在相同的载荷和边界条件下,GTX材料大大提高了仪器的性能。例如,发现对于GTX锉刀,锉刀尖端1N力的挠度大28.5%,而最大应力减小了13.2%。结论:尽管不能完全反映器械在动态旋转管内系统中的行为,但静态结果显示,与GT锉相比,GTX锉在最关键的部位更灵活且能够缓解应力,这表明其风险较低。临床使用期间根管内部骨折的情况。

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