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Finite Element Residual Stress Analysis of Induction Heating Bended Ferritic Steel Piping

机译:感应加热弯曲铁素体钢管的有限元残余应力分析

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Recently, there is a trend to apply the piping bended by induction heating process to nuclear power plants. Residual stress can be generated due to thermo-mechanical mechanism during the induction heating bending process. It is well-known that the residual stress has important effect on crack initiation and growth. The previous studies have focused on the thickness variation. In part, some studies were performed for residual stress evaluation of the austenitic stainless steel piping bended by induction heating. It is difficult to find the residual stresses of the ferritic steel piping bended by the induction heating. The study assessed the residual stresses of induction heating bended ferriticsteel piping via finite element analysis. As a result, it was identified that high residual stresses are generated on local outersurface region of the induction heating bended ferritic piping.
机译:近来,存在将通过感应加热工艺弯曲的管道应用于核电站的趋势。在感应加热弯曲过程中,由于热机械机制会产生残余应力。众所周知,残余应力对裂纹萌生和扩展具有重要影响。先前的研究集中在厚度变化上。部分地,进行了一些研究,以评估感应加热弯曲的奥氏体不锈钢管道的残余应力。很难找到因感应加热而弯曲的铁素体钢管的残余应力。该研究通过有限元分析评估了感应加热弯曲铁素体钢管的残余应力。结果,确定了在感应加热弯曲铁素体管道的局部外表面区域上产生高残余应力。

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