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首页> 外文期刊>International Journal of Fatigue >A uniaxial tensile behavior based fatigue crack growth model
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A uniaxial tensile behavior based fatigue crack growth model

机译:基于单轴拉伸行为的疲劳裂纹扩展模型

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摘要

Metallic components fail mostly due to fatigue cracks, and thus a suitable non-destructive detection is necessarily planned to ensure the operation safety. Among the requisite parameters, a fatigue crack growth (FCG) model might be the most important input, which is frequently acquired from well-defined and expensive fracture mechanics experiments. By correlating the uniaxial tensile properties (UTP) with cyclic plastic parameters and developing a unified fatigue crack closure factor U suitable for broad stress ratios, a novel FCG model of improved LAPS (iLAPS) was formulated in terms of linear damage accumulation and Rice-Kujawski-Ellyin field. Results show that the newly-developed iLAPS model can simulate the entire crack growth region as like modified NASGRO does. For open-reported structural materials available with both UTP and FCG data, it is found that current iLAPS predictions are well agreed with experimental results and are also better than original LAPS.
机译:金属部件失效主要是由于疲劳裂纹,因此必须计划进行适当的无损检测以确保操作安全。在必要的参数中,疲劳裂纹扩展(FCG)模型可能是最重要的输入,通常是从定义明确且昂贵的断裂力学实验中获得的。通过将单轴拉伸特性(UTP)与循环塑性参数相关联,并开发出适用于宽应力比的统一疲劳裂纹闭合因子U,根据线性损伤累积和Rice-Kujawski提出了改进的LAPS(iLAPS)的新型FCG模型-Ellyin场。结果表明,新开发的iLAPS模型可以像改进的NASGRO一样模拟整个裂纹扩展区域。对于同时具有UTP和FCG数据的公开报告结构材料,发现当前的iLAPS预测与实验结果非常吻合,并且也比原始LAPS更好。

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