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Rotary fatigue testing to determine the fatigue life of NiTi alloy wires: an experimental and numerical analysis

机译:旋转疲劳测试以确定NiTi合金线的疲劳寿命:实验和数值分析

摘要

Endodontic rotary file instruments used to treat root canals in dentistry suffered breakthrough transformations in recent years when stainless steel was replaced by Nickel-Titanium (NiTi). NiTi alloys used in Endodontics possess superelastic properties at body temperature (37C) that bring many advantages on the overall performance of the root-canal treatment. They can follow curved root canals more easily than stainless steel instruments and have been reported to be more effective in the removal of the inflamed pulp tissue and protection of the tooth structure. However, these instruments eventually fracture under cyclic bending loading due to fatigue, without any visible signals of degradation to the practitioner. This problem brought new challenges on how new Instruments should be tested, as NiTi alloys are highly non-linear and present a large hysteresis cycle in the Elastic domain. Current existing standards are only available for Stainless Steel testing. Thus, many authors have attempted to design systems that can test NiTi endodontic files under fatigue loads. However, no approach has been universally adopted by the community yet, as in most cases they are based on empirical set ups. Following a more systematic approach, this work presents the results of rotary fatigue tests for several NiTi wires from different manufacturers (Memry™ and Euroflex™ ).The formulation is presented, where the material strength reduction can be quantified from the determination of the strain and the number of cycles until failure, as well numerical FEM simulation to verify the analytical model predictions.
机译:近年来,当不锈钢被镍钛合金(NiTi)替代时,用于治疗牙根管的牙髓旋转锉器械经历了突破性的转变。用于牙髓治疗的NiTi合金在体温(37°C)时具有超弹性,为根管治疗的整体性能带来许多优势。与不锈钢器械相比,它们可以更容易地顺从弯曲的根管,并且据报道在去除发炎的牙髓组织和保护牙齿结构方面更有效。然而,这些器械最终由于疲劳而在周期性弯曲载荷下断裂,而对从业者没有任何可见的退化信号。由于NiTi合金是高度非线性的,并且在弹性域中存在较大的磁滞循环,因此该问题给应如何测试新仪器带来了新的挑战。当前的现有标准仅适用于不锈钢测试。因此,许多作者已经尝试设计可以在疲劳载荷下测试NiTi牙髓锉的系统。但是,社区尚未普遍采用任何方法,因为在大多数情况下,它们是基于经验的。通过更系统的方法,这项工作展示了来自不同制造商(Memry™和Euroflex™)的几条NiTi线材的旋转疲劳测试的结果。给出了配方,可以通过确定应变和降低强度来量化材料强度降低。直至失效的周期数,以及用于验证分析模型预测的数值有限元模拟。

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