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Importance of Residual Stresses and Surface Roughness regarding Fatigue of Titanium Forgings

机译:钛锻件疲劳的残余应力和表面粗糙度的重要性

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This paper presents the results of a long-term research program aimed at developing qualitative and quantitative design guidelines for the use of mechanical surface treatments designed to improve the fatigue life of structural components. High cycle fatigue tests were performed on planar four-point bending specimens derived from Ti-6AI-4V pancake forgings with a mill-annealed microstructure. The high cycle fatigue behavior of specimens with different surface conditions (as-forged and machined) in both an un-peened and a shot peened state was compared. In order to assess the fatigue failure mechanisms, detailed investigations of the surface layers were carried out. The as-forged surface state exhibits a stress distribution with significant compressive stresses near the surface, resulting in equilibrium tensile stresses in the depth. When the tensile stresses were exposed by machining a bordering surface, a distinct decrease in the fatigue strength was observed. In such cases, a shot peening treatment was shown to improve the fatigue strength. Square edges lead to a decrease in the fatigue strength, which could be aggravated by shot peening.
机译:本文介绍了一项长期研究计划的结果,旨在开发用于使用机械表面处理的定性和定量设计准则,旨在提高结构部件的疲劳寿命。在衍生自Ti-6ai-4V煎饼锻件的平面四点弯曲试样上进行高循环疲劳试验,其具有研磨的微观结构。比较了不同表面条件(伪造和机加工)的标本的高循环疲劳行为,在未淘汰和喷丸状态下进行了比较。为了评估疲劳破坏机制,进行了表面层的详细研究。锻造表面状态表现出具有明显的压缩应力的应力分布,在表面附近,导致深度的平衡拉伸应力。当通过加工边界表面暴露拉伸应力时,观察到疲劳强度的明显降低。在这种情况下,显示出喷丸处理以提高疲劳强度。方形边缘导致疲劳强度的减少,这可能会被射击喷丸加剧。

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