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Small fatigue crack growth behavior from artificial notch with focused ion beam in annealed 0.45 carbon steel

机译:0.45%碳钢退火后的聚焦离子束人工缺口引起的小疲劳裂纹扩展行为

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The aim of this study is firstly to investigate the applicability of a sharp notch with Focused Ion Beam (FIB) as a crack for fatigue limit evaluation. Secondly we investigate a condition in which artificial defects (drilled hole, FIB notch) can be used as a crack for fatigue limit evaluation. To achieve the aim, the growth behaviors and the non-propagating crack sizes of small fatigue cracks initiated from a FIB notch and a drilled hole are carefully compared with those of an annealed fatigue crack which imitates an ideally sharp crack. The results show that a FIB notch can be used as a crack for fatigue limit evaluation under some conditions. The results also show that the condition which controls the applicability of an artificial defect as an ideal crack for fatigue limit evaluation is strongly dependent on the relation between (i) the length of a non-propagating fatigue crack and (ii) the crack length when the small fatigue crack growth behaviors from an artificial defect and an ideal pre-crack become almost the same. It is found that the length of (ii) can be obtained by the analyses using the number of cycles from a certain crack length to failure.
机译:这项研究的目的是首先研究聚焦离子束(FIB)作为裂纹的疲劳极限评估的适用性的适用性。其次,我们研究了一种可以将人工缺陷(钻孔,FIB缺口)用作裂纹以进行疲劳极限评估的条件。为了达到该目的,仔细地比较了由FIB缺口和钻孔引起的小疲劳裂纹的生长行为和非扩展裂纹尺寸与模拟理想尖锐裂纹的退火疲劳裂纹的生长性能和非传播裂纹尺寸。结果表明,在某些条件下,FIB缺口可以用作疲劳极限评估的裂纹。结果还表明,控制人造缺陷作为疲劳极限评估理想裂纹的适用性的条件在很大程度上取决于(i)非传播疲劳裂纹的长度与(ii)裂纹长度的关系。人工缺陷和理想的预裂纹引起的小疲劳裂纹扩展行为几乎相同。发现(ii)的长度可以通过使用从一定裂纹长度到破坏的循环数的分析来获得。

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