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Stage II Crack Propagation Direction Determination Under Fretting Fatigue Lading: A New Approach in Accordance with Experimental Observations

机译:阶段II裂纹传播方向测定在疲劳疲劳提单下:根据实验观察的新方法

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Cracking is a dangerous degradation mode under fretting loading and the understanding of crack initiation and propagation is thus a necessity. A double experimental and theoretical approach has been undertaken to deal with crack initiation during Stage I [1,2], Stage I/Stage II transition and Stage II propagation. The work presented here is related to the latter point and aims at determining the direction and the propagation mode of cracks. A new approach is proposed here to account for nonproportional mixed mode conditions such as those encountered under fretting conditions at crack tips. Propagation directions during Stage II are derived from triangle open sigma _( theta theta )*_(max), the maximum effective amplitude of the tangential stress perpendicular to the crack trajectory. They correlate well wih experimental data. The stress field analysis shows that the trajectory of cracks borders the tensile-compressive and the tensile zones existing around the crack tip over a loading cycle.
机译:裂缝是危险的降解模式下,在微动负载下,裂纹启动和传播的理解是必要的。已经进行了一种双重实验和理论方法,以处理阶段I [1,2],阶段I /阶段II过渡和阶段繁殖期间的裂纹启动。这里呈现的工作与后一个点相关,并旨在确定裂缝的方向和传播模式。此处提出了一种新方法,以解释非储存混合模式条件,例如在裂纹尖端的微动条件下遇到的那些。在阶段II期间的传播方向衍生自三角形开放Σ_(θθ)* _(max),垂直于裂纹轨迹的切向应力的最大有效幅度。它们与实验数据很好。压力场分析表明,裂缝的轨迹通过装载循环边缘边缘边界裂缝和裂纹尖端周围的拉伸区。

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