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Fretting fatigue under variable loading below fretting fatigue limit

机译:低于微动疲劳极限的可变载荷下的微动疲劳

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摘要

The fatigue limit diagram provides the critical condition of non-failure against fatigue under constant amplitude loading. The fatigue limit diagram is usually considered to give the allowable stress if every stress component is kept within the fatigue limit diagram. In the case of variable amplitude fretting fatigue, however, this study showed that fatigue failure could occur even when all stresses were within the fatigue limit diagram. An example of such a condition is a repeated two-step loading such as when the first step stress is R = - 1 and the second step stress has a high mean value. The reason why such a phenomenon occurs was investigated. A non-propagating crack was formed by the first step stress even when well below the fatigue limit. The resultant non-propagating crack functioned as a pre-crack for the second step stress with a high mean value. Consequently, fatigue failure occurred even when every stress was within the fatigue limit diagram of constant amplitude loading. The fatigue limit diagram obtained in constant amplitude fatigue test does not necessarily guarantee safety in the case of variable amplitude loading in fretting fatigue.
机译:疲劳极限图提供了在恒定振幅载荷下不发生疲劳的关键条件。如果每个应力分量都保持在疲劳极限图中,则通常认为疲劳极限图会给出允许应力。但是,对于振幅可变的微动疲劳,该研究表明,即使所有应力都在疲劳极限图中,也会发生疲劳破坏。这种情况的一个示例是重复的两步加载,例如当第一步应力为R =-1且第二步应力具有较高的平均值时。研究了这种现象发生的原因。即使在远低于疲劳极限的情况下,第一步应力也会形成非传播性裂纹。所得的非传播裂纹用作具有高平均值的第二步应力的预裂纹。因此,即使每个应力都在恒定振幅载荷的疲劳极限图中,也会发生疲劳破坏。在微动疲劳中,在可变振幅载荷的情况下,通过恒定振幅疲劳试验获得的疲劳极限图不一定能保证安全性。

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