首页> 外文会议>ASME Pressure Vessels and Piping conference >EVALUATION OF EXCESSIVE LOADING EFFECT ON FATIGUE CRACK GROWTH BEHAVIOR BASED ON CRACK BLUNTING AND STRESS DISTRIBUTION IN FRONT OF THE CRACK TIP
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EVALUATION OF EXCESSIVE LOADING EFFECT ON FATIGUE CRACK GROWTH BEHAVIOR BASED ON CRACK BLUNTING AND STRESS DISTRIBUTION IN FRONT OF THE CRACK TIP

机译:基于裂纹尖端前部的裂纹扩展和应力分布的疲劳裂纹扩展行为超负荷评估

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It is very important to establish an evaluation method of the structural integrity of piping beyond the small scale yielding condition due to large earthquakes. One of the key issues is the effect of excessive loading on the fatigue crack growth behavior. We performed fatigue crack growth tests under constant amplitude cyclic loading with a single excessive tensile/compressive load. The stress distribution in front of crack tip and crack blunting were estimated by FEM analyses. After the crack tip was blunted by the excessive tensile loading, the effect of the excessive loading on crack growth rate varied depending on the magnitude of the subsequent compressive loading. When a compressive load is enough to close the crack, the crack growth rate became higher than that before the excessive tensile loading while increasing the tensile stress in front of crack tip. A crack growth prediction method has been proposed considering the effects of the excessive loading based on the variation of the stress distribution in front of crack tip and the crack blunting. The predicted crack growth rate by the proposed method was correlated with the experimental ones.
机译:建立由于大地震引起的小规模屈服条件超出了管道结构完整性的评价方法非常重要。其中一个关键问题是过度载入对疲劳裂纹生长行为的影响。我们在恒定幅度循环加载下进行疲劳裂纹生长试验,具有单一过度拉伸/压缩载荷。通过有限元分析估计裂纹尖端和裂纹尖端前面的应力分布。在裂纹尖端被过度拉伸载荷钝化之后,过度负载对裂纹生长速率的影响根据随后的压缩负载的大小而变化。当压缩载荷足以关闭裂缝时,裂缝的生长速率比过度拉伸载荷在裂纹尖端前面的拉伸应力增加之前的裂纹增长率。提出了一种裂缝的生长预测方法,考虑了基于裂纹尖端前方应力分布的变化和裂纹钝化的变化的影响。通过所提出的方法预测的裂纹增长率与实验结果相关。

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