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Analysis of Stress-strain Concentration at Nonmetallic Inclusion and S-N Curve of Ultra-ling Fatigue Failure of High-strength Steels

机译:高强度钢超菱疲劳失效的非金属夹杂物和S-N曲线应力 - 应变浓度分析

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It has been reported that, according to some rotating bending fatigue tests, the S-N curve for high-strength steel consists of two straight lines. one corresponds to the line for short life at high stress level due to fracture from a surface origin, and another corresponds to the line for ultra-ling fatigue life at low stress level due to fracture from internal nonmetallic inclusions. In this study, stress-strain concentration around inclusions is analyzed by FEM to seek a possible mechanism for this particular S-N curve behavior of ultra-long fatigue failure of high-strength steel for rotating bending fatigue test. A special focus is put on the growth of plastic zone around an internal inclusion and near surface with increasing applied nominal stress. Considering the different scale of plastic zone near surface and around an internal inclusion, it can be concluded that, in case of rotating bending fatigue test, fracture is likely to occur from a surface origin at high stress level and from an internal inclusion at low stress level. However, this characteristic depends on several factors such as specimen size, residual stress, cyclic yield stress and size and location of the crucial inclusion.
机译:据报道,根据一些旋转弯曲疲劳试验,高强度钢的S-N曲线由两条直线组成。一种对应于来自表面来源的骨折的高应力水平的短寿命线的线,并且另一个对应于由于内部非金属夹杂物的骨折而在低应力水平下的超齿疲劳寿命的线。在该研究中,通过有限元分析夹杂物周围的应力 - 应变浓度,以寻求高强度钢的超长疲劳失效的这种特殊S-N曲线行为的可能机制,用于旋转弯曲疲劳试验。在内部夹杂物和附近表面围绕塑料区的增长,采用施加的标称压力增加,采用特殊焦点。考虑邻近表面和围绕的内部夹杂物塑性区的不同比例,可以得出的结论是,在旋转弯曲疲劳试验的情况下,断裂可能从在高应力水平的表面原点和从内部夹杂物在低应力发生等级。然而,这种特性取决于诸如标本尺寸,残余应力,循环屈服应力和尺寸和关键夹杂物的尺寸等因素。

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