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Multiaxial fatigue life assessment of welds based on nominal and hot spot stresses

机译:基于名义应力和热点应力的焊缝多轴疲劳寿命评估

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A little attention has been focused on multiaxial fatigue of welded joints, even though numerous industrial applications require the consideration of multiaxial effects. Therefore, the goal in present thesis was to find methods for fatigue assessment of welded joints in multiaxial loading cases. A survey of biaxial (bending or tension and torsion) constant amplitude fatigue test results of welded connections was also carried out. Re-analysis of these 233 experimental results from eight different studies was performed based on nominal and hot spot stresses. Three potential interaction equations and three damage parameters were used in the re-analysis. The interaction equations were obtained from SFS 2378, Eurocode 3 and IIW recommendations. Of the three interaction equations SFS 2378 provided the least degree of scatter when design fatigue classes were used and with mean fatigue classes the IIW most successfully correlated the predicted and experimental lives. Principal stress range, maximum shear stress range, and a modified critical plane model for welds were used as the damage parameters. The design hot spot S-N curves were FAT 84 for maximum principal stress range, FAT 109 for maximum shear stress range and FAT 97 for the modified critical plane model, when all toe failures were analysed with a slope of 3. However, observed scatter was 70-100% larger than that observed in uniaxial loaded specimens analysed using the hot spot approach.
机译:尽管许多工业应用都需要考虑多轴效应,但对焊接接头的多轴疲劳却很少有关注。因此,本发明的目的是寻找多轴载荷情况下焊接接头疲劳评估的方法。还对焊接连接的双轴(弯曲或拉伸和扭转)恒定振幅疲劳试验结果进行了调查。基于名义应力和热点应力,对来自八项不同研究的这233个实验结果进行了重新分析。在重新分析中使用了三个潜在的相互作用方程式和三个损伤参数。相互作用方程式是从SFS 2378,Eurocode 3和IIW建议中获得的。在使用设计疲劳等级时,在三个相互作用方程式中,SFS 2378的散射程度最小,对于平均疲劳等级,IIW最成功地关联了预测寿命和实验寿命。主应力范围,最大剪切应力范围和改进的焊缝临界平面模型被用作损伤参数。当以3的斜率分析所有脚趾破坏时,设计热点的SN曲线为FAT 84(最大主应力范围),FAT 109(最大剪切应力范围)和FAT 97(修改的临界面模型)。但是,观察到的散点为70比使用热点方法分析的单轴加载样本中观察到的结果大-100%。

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