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Fretting Fatigue and Stress Relaxation Behaviors of Shot- Peened Ti-6Al-4V

机译:喷丸Ti-6Al-4V的微动疲劳和应力松弛行为

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摘要

Relaxation behavior of residual stress and its effect on fretting fatigue response of shot-peened titanium alloy, Ti-6Al-4V were investigated at room and elevated temperatures under constant amplitude cycling condition using two contact configurations, cylinder on flat and flat on flat. Measurements by X-ray diffraction method before and after tests showed that residual compressive stress relaxed during fretting fatigue. Fretting fatigue life depended on the amount of stress relaxation as well as on the applied stress range. Elevated temperature induced more residual stress relaxation relative to that at room temperature, which, in turn, resulted in a reduction of fretting fatigue life. There was no effect of contact geometry on fretting fatigue life on the basis of the applied cyclic stress on the specimen, which did not account for any effects from contact stresses, even though less residual stress relaxation occurred with flat pad. A critical plane based fatigue crack initiation model, modified shear stress range parameter (MSSR), was computed from finite element analysis for tests incorporating various levels of stress relaxation. It showed that not only crack initiation but also crack propagation should be considered to characterize fretting fatigue behavior of shot-peened specimens.
机译:研究了喷丸硬化钛合金Ti-6Al-4V在室温和高温下在恒定振幅循环条件下的残余应力松弛行为及其对微动疲劳响应的影响,采用了圆柱接触和平面接触两种接触构造。试验前后通过X射线衍射法进行的测量表明,微动疲劳过程中残余的压缩应力得以缓解。微动疲劳寿命取决于应力松弛量以及所施加的应力范围。相对于室温,升高的温度会引起更多的残余应力松弛,从而导致微动疲劳寿命的降低。根据试样上施加的循环应力,接触几何形状对微动疲劳寿命没有影响,即使使用平板垫产生的残余应力松弛较少,也没有考虑接触应力的任何影响。通过有限元分析计算了基于临界平面的疲劳裂纹萌生模型,即修正的剪切应力范围参数(MSSR),以进行包含各种应力松弛水平的测试。结果表明,不仅应考虑裂纹萌生,而且应考虑裂纹扩展来表征喷丸试样的微动疲劳行为。

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