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Influence Factors of the Formation of ODA in Ultralong Fatigue Life Regime

机译:影响超声疲劳寿命制度形成的影响因素

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Recent studies have provided a warning that fatigue failure can occur in the life regime exceeding N = 10~7 and at stresses lower than the conventional fatigue limit. In the present study, the mechanism of fatigue failure in extremely high cycle regime was studied on bearing steels, SAE 52100. Specimens having a longer fatigue life had a particular morphology beside the inclusion at fracture origin. The particular morphology looked optically dark when observed by an optical microscope and it was named the optically dark area, ODA. The ODA looks a rough area when observed by SEM and AFM. In order to investigate the growth of ODA with cycles, the fatigue tests of multi-step loadings were carried out and the formation of ODA was compared with those of the specimens tested under a constant amplitude loading. The condition for the critical size of ODA for the start of conventional fatigue crack growth mechanism was analysed by fracture mechanics. The critical stress intensity factor range ΔK_(ODA) can be correlated with the threshold stress intensity factor'range ΔK_(th) for small cracks expressed by the (area) parameter model.
机译:最近的研究提供了警告,疲劳失败可能在超过N = 10〜7的寿命状态下发生,并且在低于传统疲劳极限的应力下。在本研究中,研究了极高的循环状态下的疲劳失效机制,在轴承钢上,SAE 52100研究了疲劳寿命较长的标本在裂缝起源旁边具有特定的形态。当由光学显微镜观察时,特定形态看起来光学暗,并被称为光学暗区,ODA。 ODA在SEM和AFM观察时看起来是一个粗糙的区域。为了探讨循环的ODA的生长,进行了多阶梯载荷的疲劳试验,并将ODA的形成与在恒定幅度载荷下测试的样品的形成。断裂力学分析了常规疲劳裂纹生长机制开始临界致态官方体的条件。临界应力强度因子范围ΔK_(ODA)可以与由(区域)参数模型表示的小裂缝的阈值应力强度因子'谐波Δk_(th)相关。

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