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The Role of Fatigue Variability in Life Prediction of an alpha+beta Titanium Alloy

机译:疲劳变异在α+β钛合金寿命预测中的作用

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The fatigue life variability of the a+p titanium alloy,Ti-6Al-2Sn-4Zr-6Mo increased with decreasing stress level.The variability in life was found to be due to segregation of lives due to two failure mechanisms.A bimodal cumulative distribution model was shown to accurately describe the combined failure modes.The nominal failure processes for the two regimes were similar,with crack nucleation occurring in equiaxed alpha_p particles,irrespective of life or stress level.However the variability in life was not controlled by the size of the crack-nucleating alpha_p,but rather by the ability of the material to distribute deformation and avoid early crack nucleation.
机译:A + P钛合金的疲劳寿命变化,TI-6AL-2SN-4ZR-6MO随着胁迫水平的降低而增加。发现生命的变异是由于寿命因两种故障机制而导致的寿命。双峰累积分布显示模型可以准确描述组合的失效模式。两个制度的标称失败过程类似,在等式的αP颗粒中发生裂缝成核,无论生命还是应力水平如何。然而,生命中的可变性不受限制裂缝核解α_P,而是通过材料分配变形的能力,避免早期裂纹成核。

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