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A discussion about multi-axial fatigue criteria for NiTinol cardiovascular devices

机译:关于镍钛烯醇心血管装置多轴疲劳标准的探讨

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Nickel-Titanium (NiTinol) alloys exploit a typical super-elastic behavior which makes them suitable for many biomedical applications, among which peripheral stenting, requiring the device being subjected to the high mobility of the lower limbs. Unfortunately, this complex environment can lead to the device fatigue fracture with likely other more severe complications, e.g. restenosis. Standards require to experimentally verify stent fatigue life behavior, without giving indications on how to select the loads to be applied for resembling most critical in-vivo conditions. Moreover, different multi-axial fatigue criteria have been originally developed for standard metals to predict the behavior under cyclic loads, but none of them is specifically formulated for NiTinol. This paper presents a numerical study having two aims: i) understanding how non-proportional loading conditions due to combination of axial compression, bending and torsion induced at each patient gait on the femoro-popliteal artery affects the implanted stent stress/strain distribution; ii) understanding how stent fatigue life prediction may be affected by the choice of the fatigue criteria. Accordingly, two different peripheral stent geometries, resembling commercial ones, were analysed under different sets of loading conditions. The cyclic deformations induced over the device structure by macroscopic loads are interpreted through four different fatigue approaches recently used in Nitinol fatigue analyses: Von Mises, Fatemi-Socie, Brown-Miller and Smith-Watson-Topper. The comparison between the outputs highlights that they are strongly influenced by the loading path, recognizing the major role in fatigue due to the combined torsional and bending actions. On the other hand, the choice of the fatigue criterion impacts on the fatigue life prediction.
机译:镍 - 钛(Nitinol)合金利用典型的超弹性行为,使它们适用于许多生物医学应用,其中包括外周支架,需要该装置对下肢的高迁移率进行。不幸的是,这种复杂的环境可以导致装置疲劳骨折,可能具有其他更严重的并发症,例如更严重的并发症。再狭窄。标准要求在实验验证支架疲劳寿命行为,而无需给出如何选择要应用于类似于最关键的体内条件的负载。此外,已经最初为标准金属开发了不同的多轴疲劳标准,以预测环状载荷下的行为,但它们都不是针对镍钛诺特定配制的。本文提出了一个具有两个目的的数值研究:i)了解由于在股骨吞咽动脉上的每个患者步态上诱导的轴向压缩,弯曲和扭转组合而导致的非比例载荷条件如何影响植入的支架应力/应变分布; ii)了解支架疲劳寿命预测如何受到疲劳标准的选择影响。因此,在不同的加载条件下分析了与商业类似的两种不同的外周支架几何形状。通过宏观载荷在装置结构上诱导的循环变形通过最近使用的尼替索劳动疲劳分析的四种不同的疲劳方法来解释:von Mises,Fatemi-Socie,Brown-Miller和Smith-Watson-Topper。输出之间的比较突出显示它们受到负载路径的强烈影响,识别由于组合扭转和弯曲动作引起的疲劳中的主要作用。另一方面,选择疲劳标准对疲劳寿命预测的影响。

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