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Estimation of residual stress in welding of dissimilar metals at nuclear power plants using cascaded support vector regression

机译:基于级联支持向量回归的核电站异种金属焊接残余应力估算。

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Residual stress is a critical element in determining the integrity of parts and the lifetime of welded structures. It is necessary to estimate the residual stress of a welding zone because residual stress is a major reason for the generation of primary water stress corrosion cracking in nuclear power plants. That is, it is necessary to estimate the distribution of the residual stress in welding of dissimilar metals under manifold welding conditions. In this study, a cascaded support vector regression (CSVR) model was presented to estimate the residual stress of a welding zone. The CSVR model was serially and consecutively structured in terms of SVR modules. Using numerical data obtained from finite element analysis by a subtractive clustering method, learning data that explained the characteristic behavior of the residual stress of a welding zone were selected to optimize the proposed model. The results suggest that the CSVR model yielded a better estimation performance when compared with a classic SVR model.
机译:残余应力是确定零件完整性和焊接结构寿命的关键因素。必须估计焊接区的残余应力,因为残余应力是核电厂中产生一次水应力腐蚀裂纹的主要原因。即,有必要估计在歧管焊接条件下的异种金属焊接中的残余应力的分布。在这项研究中,提出了级联支持向量回归(CSVR)模型以估计焊接区的残余应力。根据SVR模块,CSVR模型是连续和连续构造的。使用通过减法聚类法从有限元分析获得的数值数据,选择可以解释焊接区残余应力特征行为的学习数据,以优化所提出的模型。结果表明,与经典SVR模型相比,CSVR模型产生了更好的估计性能。

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