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Influence of the Structure on the Strain-Controlled Fatigue of Nitinol

机译:结构对镍钛诺应变控制疲劳的影响

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摘要

The influence of increased dislocation density; dispersity of Ni-rich (Ti_3Ni_4 and Ti_2Ni_3) particles and volume fraction of Ti-rich (Ti_2NiO_x) particles on the low-cycle (high amplitude) and high-cycle (low amplitude) fatigue resistance of nitinol has been considered in this paper. It was revealed that the fatigue resistance of nitinol in low-cycle conditions (N≤1e3,ε_a>2%) may be improved by increasing the part of deformation which is realized by martensitic mechanism. This part may be estimated by measuring ε_c r~(0.2), which can reflect the influence of the structure parameter both on σ_M and σ_(slip). It was found that in high-cycle fatigue conditions (N≥1e6, (ε_a≤0.5%) the substructure of nitinol predominantly determine its fatigue resistance, which is being the better in samples that had higher dislocation density or high dispersity of Ni-rich particles (up to 30 nm).
机译:位错密度增加的影响;本文考虑了镍钛合金在低循环(高振幅)和高循环(低振幅)疲劳强度上的富镍(Ti_3Ni_4和Ti_2Ni_3)颗粒的分散度以及富钛(Ti_2NiO_x)颗粒的体积分数。结果表明,镍钛合金在低循环条件下(N≤1e3,ε_a> 2%)的抗疲劳性可以通过增加马氏体机制实现的变形部分来提高。可以通过测量ε_cr〜(0.2)来估计这部分,它可以反映结构参数对σ_M和σ_(slip)的影响。发现在高循环疲劳条件下(N≥1e6,(ε_a≤0.5%),镍钛诺的亚结构主要决定其疲劳强度,在位错密度较高或富镍分散度较高的样品中表现更好颗粒(最大30 nm)。

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