首页> 外文期刊>Biomaterials >An equivalent strain/Coffin-Manson approach to multiaxial fatigue and life prediction in superelastic Nitinol medical devices.
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An equivalent strain/Coffin-Manson approach to multiaxial fatigue and life prediction in superelastic Nitinol medical devices.

机译:超弹性镍钛诺医疗设备中多轴疲劳和寿命预测的等效应变/科夫曼森方法。

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摘要

Medical devices, particularly endovascular stents, manufactured from superelastic Nitinol, a near-equiatomic alloy of Ni and Ti, are subjected to complex mixed-mode loading conditions in vivo, including axial tension and compression, radial compression, pulsatile, bending and torsion. Fatigue lifetime prediction methodologies for Nitinol, however, are invariably based on uniaxial loading and thus fall short of accurately predicting the safe lifetime of stents under the complex multiaxial loading conditions experienced physiologically. While there is a considerable body of research documented on the cyclic fatigue of Nitinol in uniaxial tension or bending, there remains an almost total lack of comprehensive fatigue lifetime data for other loading conditions, such as torsion and tension/torsion. In this work, thin-walled Nitinol tubes were cycled in torsion at various mean and alternating strains to investigate the fatigue life behavior of Nitinol and results compared to equivalent fatigue data collected under uniaxial tensile/bending loads. Using these strain-life results for various loading modes and an equivalent referential (Lagrangian) strain approach, a strategy for normalizing these data is presented. Based on this strategy, a fatigue lifetime prediction model for the multiaxial loading of Nitinol is presented utilizing a modified Coffin-Manson approach where the number of cycles to failure is related to the equivalent alternating transformation strain.
机译:由超弹性镍钛合金(一种Ni和Ti的近等原子合金)制造的医疗设备,尤其是血管内支架,在体内经受着复杂的混合模式加载条件,包括轴向拉伸和压缩,径向压缩,搏动,弯曲和扭转。然而,镍钛诺的疲劳寿命预测方法始终基于单轴载荷,因此无法准确预测在生理上经历的复杂多轴载荷条件下支架的安全寿命。尽管有大量的研究记录了镍钛诺在单轴拉伸或弯曲时的循环疲劳,但对于其他载荷条件(例如扭转和拉伸/扭转),几乎完全缺乏全面的疲劳寿命数据。在这项工作中,使薄壁镍钛诺管以不同的平均和交替应变进行扭转循环,以研究镍钛诺的疲劳寿命行为,并将结果与​​在单轴拉伸/弯曲载荷下收集的等效疲劳数据进行比较。将这些应变寿命结果用于各种加载模式和等效的参考(拉格朗日)应变方法,提出了一种标准化这些数据的策略。基于此策略,使用改进的科芬-曼森方法,提出了镍钛诺多轴载荷的疲劳寿命预测模型,其中失效循环次数与等效交变转变应变有关。

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