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Fretting Fatigue Behavior of Shot-Peened Ti-6Al-4V and IN100

机译:射击喷丸的疲劳行为Ti-6al-4V和In100

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Shot-peened titanium alloy Ti-6Al-4V and nickel-based super alloy IN 100 were subjected to plain and fretting fatigue under cylinder-on-flat contact condition at room temperature. Measurement of compressive residual surface stress from shot-peening before and after fretting showed relaxation, which was significant in IN100 and near the contact surface. The fretting fatigue life of IN100 did not improve significantly due to shot-peening, while there was considerable improvement for Ti-6Al-4V and relatively less relaxation of the residual surface stress. Further, fretting had a relatively more detrimental effect on the fatigue performance of Ti-6Al-4V than in the case of IN100. A critical plane-based fatigue crack initiation model, a modified shear stress range parameter, was computed from finite element analysis for two levels of residual surface stress relaxation: no relaxation and complete relaxation. This analysis suggested that not only crack initiation but also propagation should be considered to characterize fretting fatigue behavior of shot-peened specimens; however, it showed an appropriate trend with the measured fretting fatigue life and agreement with several other experimental observations.
机译:喷丸处理钛合金Ti-6AL-4V和IN 100镍基超合金在室温下下圆筒上平坦的接触条件进行平纹和磨蚀疲劳。测量射击前后射击的压缩残余表面应力显示放松,在1000中具有显着性,接近接触表面。由于射击喷丸,In100的疲劳寿命没有显着改善,而Ti-6Al-4V对剩余表面应力的放松相当较少,而且对残留表面应力的放松相当大。此外,烦恼对Ti-6Al-4V的疲劳性能具有比在100/100的情况下的疲劳性能相对较差的影响。从有限元分析计算了两个临界平面的疲劳裂纹启动模型,改性剪切应力范围参数,用于两级残留表面应力松弛:无放松和完全放松。该分析表明,不仅应考虑裂纹启动,还应考虑传播,以表征射击喷丸标本的疲劳疲劳行为;然而,它表现出适当的趋势与测量的疲劳疲劳生活和与其他几种实验观察结果的协议。

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