首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Predicting in vivo failure of pseudoelastic NiTi devices under low cycle, high amplitude fatigue.
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Predicting in vivo failure of pseudoelastic NiTi devices under low cycle, high amplitude fatigue.

机译:预测低循环,高振幅疲劳下伪弹性NiTi装置的体内失效。

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摘要

Due to the large reversible strains achievable through the stress-induced austenite-martensite phase transformation in NiTi alloys, NiTi has replaced stainless steel in the majority of large-strain biomedical applications such as root canal enlargement. However, the pseudoelasticity of NiTi is currently overshadowed by the short fatigue life of NiTi wires used in this low cycle (200-2000 rpm), high amplitude (epsilon(a) > 2.5%) application, resulting in in vivo fracture or premature retirement of otherwise reusable NiTi-based wire devices. In this study, the failure of pseudoelastic 55.8 wt % Ni-Ti wire is investigated experimentally, as a function of experimental parameters that include the clinically relevant regime. The effects of radius of curvature, angle of curvature, wire diameter, strain amplitude, cyclic frequency, volume under strain, and specific heat of the surrounding environmental fluid are considered systematically. These data indicate that the lifetime or cycles to failure N(f) of a rotating NiTi wire can be predicted via a modified Coffin-Manson relation that is a strong function of both strain amplitude and volume under strain, and a weaker function of frequency and fluid specific heat. The resulting quantitative relation can be used to predict useful device lifetime under clinically relevant conditions and thereby reduce incidences of in vivo failure.
机译:由于在NiTi合金中通过应力诱导的奥氏体-马氏体相变可实现大的可逆应变,因此NiTi在大多数大应变生物医学应用(例如根管扩大)中已取代了不锈钢。然而,目前在这种低循环(200-2000 rpm),高振幅(ε(a)> 2.5%)应用中使用的镍钛丝的疲劳寿命短,使镍钛的伪弹性被其所掩盖,从而导致体内断裂或过早退役基于NiTi的可重复使用的有线设备。在这项研究中,根据包括临床相关方案在内的实验参数,对伪弹性55.8 wt%Ni-Ti丝的破坏进行了实验研究。系统地考虑了曲率半径,曲率角,导线直径,应变幅度,循环频率,应变下的体积以及周围环境流体的比热的影响。这些数据表明,可以通过改进的科芬-曼森关系来预测旋转镍钛丝的寿命或失效N(f)的周期,该关系是应变振幅和应变下体积的强函数,而频率和频率的弱函数。流体比热。所得的定量关系可用于预测在临床相关条件下有用的设备寿命,从而减少体内衰竭的发生率。

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