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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Surface Nanocrystallization on Fatigue Behavior of Pure Titanium
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Effect of Surface Nanocrystallization on Fatigue Behavior of Pure Titanium

机译:表面纳米晶化对纯钛疲劳行为的影响

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摘要

The high-cycle fatigue behavior was investigated in pure titanium after surface nanocrystallization (SNC Ti). Compared with the coarse-grained titanium (CG Ti) samples, the SNC Ti samples exhibit an improved fatigue life. The SNC has a remarkable influence on the fatigue cracks initiation and growth of pure titanium. The results show that, because the free-surface cracking is suppressed by the surface nanogradient structure in the SNC Ti, the fatigue cracks initiation sites change from the free surface to the subsurface. Meanwhile, the fatigue crack growth rate decreases due to the microstructural feature and residual compressive stress. The deformation twins in the subsurface of SNC Ti have a marked effect on the fatigue crack initiation and the crack growth. The former effect is due to the twin boundaries being preferential sites for crack initiation, while the latter is associated with the barriers that the twin boundaries pose to the propagation of dislocations. Furthermore, microstructural analysis indicates that the dislocation distribution in SNC Ti gradually becomes homogenous as fatigue processes. This homogeneous microstructure is also beneficial to the improvement of fatigue life.
机译:在表面纳米晶化(SNC Ti)之后,研究了纯钛的高循环疲劳行为。与粗晶粒钛(CG Ti)样品相比,SNC Ti样品具有更长的疲劳寿命。 SNC对纯钛的疲劳裂纹萌生和生长具有显着影响。结果表明,由于SNC Ti中的表面纳米梯度结构抑制了自由表面裂纹,因此疲劳裂纹的起始位置从自由表面变为次表面。同时,由于显微组织特征和残余压应力,疲劳裂纹扩展速率降低。 SNC Ti表面下的形变孪晶对疲劳裂纹萌生和裂纹扩展具有显着影响。前者的影响是由于孪晶边界是裂纹萌生的优先部位,而后者则与孪晶边界对位错传播造成的障碍有关。此外,显微组织分析表明,随着疲劳过程,SNC Ti中的位错分布逐渐变得均匀。这种均匀的微观结构也有利于改善疲劳寿命。

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