Wang Yixun, Luo Yuxiao, Tsutsumi Seiichiro
Joining and Welding Research Institute, Osaka University, Osaka 567-0047, Japan.
Department of Structural Engineering, Tongji University, Shanghai 200092, China.
Materials (Basel). 2020 Oct 17;13(20):4639. doi: 10.3390/ma13204639.
The existing parametric formulae to calculate the notch stress concentration factor of fillet welds often result in reduced accuracy due to an oversimplification of the real weld geometry. The present work proposes a parametric formula for the evaluation of the notch SCF based on the spline weld model that offers a better approximation of the real shape of the fillet weld. The spline model was adopted in FE analyses on T-shape joints and cruciform joints models, under different loading conditions, to propose a parametric formula for the calculation of the SCF by regression analysis. In addition, the precision of parametric formulae based on the line model was examined. The magnitude of the stress concentration was also analyzed by means of its probability distribution. The results show that the line model is not accurate enough to calculate the SCF of fillet weld if the weld profile is considered. The error of the SCF by the proposed parametric formulae is proven to be smaller than 5% according to the testing data system. The stress concentration of cruciform joints under tensile stress represents the worst case scenario if assessed by the confidence interval of 95% survival probability.
现有的计算角焊缝缺口应力集中系数的参数公式,由于对实际焊缝几何形状过度简化,常常导致精度降低。本文基于样条焊缝模型提出了一种用于评估缺口应力集中系数(SCF)的参数公式,该模型能更好地逼近角焊缝的实际形状。在不同加载条件下,对T形接头和十字形接头模型进行有限元分析时采用样条模型,通过回归分析提出计算SCF的参数公式。此外,还检验了基于直线模型的参数公式的精度。同时通过应力集中的概率分布分析其大小。结果表明,如果考虑焊缝轮廓,直线模型计算角焊缝的SCF不够精确。根据测试数据系统,所提出的参数公式计算SCF的误差被证明小于5%。如果按95%生存概率的置信区间评估,十字形接头在拉伸应力下的应力集中代表了最不利的情况。