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3D analysis for pit evolution and pit-to-crack transition during corrosion fatigue*

机译:腐蚀疲劳期间坑进化和坑裂化转变的3D分析*

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This paper presents a deterministic model to predict the pit evolving morphology and crack initiation life of corrosion fatigue. Based on the semi-ellipsoidal pit assumption, the thermodynamic potential including elastic energy, surface energy and electrochemical energy of the cyclically stressed solid with an evolving pit is established, from which specific parameters that control the pit evolution are introduced and their influence on the pit evolution are evaluated. The critical pit size for crack nucleation is obtained from stress intensity factor criterion and the crack nucleation life is evaluated by Faraday’s law. Meanwhile, this paper presents a numerical example to verify the proposed model and investigate the influence of cyclic load on the corrosion fatigue crack nucleation life. The corrosion pit appears approximately as a hemisphere in its early formation, and it gradually transits from semicircle to ellipsoid. The strain energy accelerates the morphology evolution of the pit, while the surface energy decelerates it. The higher the stress amplitude is, the smaller the critical pit size is and the shorter the crack initiation life is.
机译:本文提出了一种确定性模型,以预测腐蚀疲劳的坑演化形态和裂纹启动寿命。基于半椭圆形凹坑假设,建立了具有不断变化坑的循环压力固体的弹性能量,表面能和电化学能量的热力学电位,从中引入了控制凹坑进化的具体参数及其对坑的影响进化评估。裂缝成核的临界凹坑尺寸是从应力强度因子标准获得的,并通过法拉第法律评估裂缝成核寿命。同时,本文呈现了一个数字示例,以验证所提出的模型,并调查循环负荷对腐蚀疲劳裂纹成核寿命的影响。腐蚀坑在早期形成大约为半球,逐渐从半圆形到椭球体过度过度。应变能量加速坑的形态学,而表面能减速。应力幅度越高,临界凹坑尺寸越小,裂纹启动寿命越短。

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