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首页> 外文期刊>International Journal of Fatigue >Small crack growth model from low to very high cycle fatigue regime for internal fatigue failure of high strength steel
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Small crack growth model from low to very high cycle fatigue regime for internal fatigue failure of high strength steel

机译:高强度钢内部疲劳失效从低循环到高循环疲劳状态的小裂纹扩展模型

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摘要

Fatigue failure of high strength steels mostly originates at nonmetallic inclusions. An optically dark area (ODA) beside the inclusion can be observed in specimens fractured at very high cycle fatigue (VHCF) regime. The present paper proposes fatigue life prediction models from low to VHCF regime. The fatigue life prediction model inside ODA has been constructed in the VHCF regime based on the master curve of the growth of ODA where fatigue failure is caused by cyclic loading assisted by hydrogen trapped by inclusion. The fatigue crack growth law is proposed for a small crack outside ODA within the framework of the area~(1/2) parameter model where the concept of "continuously variable fatigue limit" for small crack is introduced. The life and scatter of fatigue life originating at inclusions can be well evaluated by the proposed models.
机译:高强度钢的疲劳失效主要源于非金属夹杂物。在极高循环疲劳(VHCF)状态下断裂的样品中可以观察到夹杂物旁边的光学暗区(ODA)。本文提出了从低到VHCF的疲劳寿命预测模型。 ODA内部的疲劳寿命预测模型是在VHCF体制下基于ODA增长的主曲线构建的,ODA的增长主要曲线是疲劳循环失效是由循环载荷引起的,该循环载荷是由于夹杂物捕获而导致的。在Area〜(1/2)参数模型的框架内,提出了ODA外部小裂纹的疲劳裂纹扩展规律,引入了小裂纹“连续疲劳极限”的概念。所提出的模型可以很好地评估源自夹杂物的疲劳寿命和寿命。

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