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Rotary fatigue life of NiTi alloy wires and FEA modelling of fatigue damage

机译:镍钛合金线的旋转疲劳寿命及疲劳损伤的有限元模拟

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摘要

Nickel-Titanium (NiTi) alloys with superelastic properties have been increasingly introduced as a substitute to more conventional alloys. For example, NiTi alloys used in Dentistry, such as in Endodontic rotary files, possess superelastic properties that allow for the file to follow teeth root canals more easily than their stainless-steel counterparts. Nevertheless, during surgery, the file is subjected to cyclic bending loading, since it is spinning while being deformed inside the curved canal. Therefore, these instruments are prone to fracture due to fatigue, without showing any visible signals of degradation. This problem brought new challenges on how new instruments should be tested, as NiTi alloys are highly non-linear. However, most existing test setups ignore the fracture mechanics involved in the fatigue phenomenon. In this work, the results of rotary fatigue tests for NiTi wires from different manufacturers is presented. The formulation is described, where the material strength reduction can be quantified from the determination of the strain and the number of cycles until failure. Experimental tests as well as numerical Finite Element Analysis (FEA) simulations are presented to better understand the fatigue fracture mechanisms present in NiTi alloys, showing that there is good agreement between the predicted strains (difficult to measure in such small wires) and the cycles to failure. One characteristic is that these alloys exhibit a large hysteresis in the elastic domain if loaded up to the mixture of austenitic and martensitic phases (also known as B19’ martensite) and then unloaded. Rotating bending fatigue tests of NiTi wires show that, when loaded up to the B19’ martensite, the number of cycles to failure decrease with the applied strain.
机译:具有超弹性特性的镍钛(NiTi)合金已被越来越多地替代更常规的合金。例如,在牙科领域(例如牙髓旋转锉中)使用的NiTi合金具有超弹性的特性,与不锈钢同类产品相比,使锉刀更容易顺着牙根管。然而,在手术过程中,锉刀经受周期性的弯曲载荷,因为它在弯曲的管内变形的同时正在旋转。因此,这些仪器容易因疲劳而破裂,而没有任何可见的降解信号。由于NiTi合金是高度非线性的,因此这个问题给应如何测试新仪器带来了新的挑战。但是,大多数现有的测试设置都忽略了疲劳现象中涉及的断裂力学。在这项工作中,给出了来自不同制造商的镍钛丝旋转疲劳测试的结果。描述了配方,其中材料强度的降低可以通过确定应变和直至失效的循环数来量化。为了更好地理解NiTi合金中存在的疲劳断裂机理,进行了实验测试和数值有限元分析(FEA)模拟,表明预测的应变(难以测量此类细线)与循环之间存在良好的一致性。失败。一个特征是,这些合金如果加载到奥氏体和马氏体相(也称为B19'马氏体)的混合物中,然后再卸载,则在弹性域中会显示出较大的滞后现象。 NiTi线材的旋转弯曲疲劳试验表明,当加载到B19'马氏体上时,失效循环的次数会随着所施加的应变而减少。

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