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Numerical simulation on the effect of welding parameters on welding residual stresses in T92/S30432 dissimilar welded pipe

机译:焊接参数对T92 / S30432异种焊管焊接残余应力影响的数值模拟

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Dissimilar welded joints are commonly used in fossil power plants to connect martensitic steel components and austenitic stainless steel piping systems. The integrity for such welded structures is depended on residual stresses induced by manufacturing process. In this paper, the characteristics of residual stresses on the dissimilar welded pipe between T92 steel and S30432 steel were investigated using finite element method. Moreover, the effects of heat input, groove shape and layer number on the residual stress distribution were studied to find the approach to reduce the residual stress. The numerical results revealed that the hoop and axial stress in heat affected zone (HAZ) of T92 steel side of the dissimilar welded joint had sharp gradients. By decreasing the groove angle, the peak values of the hoop and axial stress on T92 steel side were reduced greatly while the peak values in welded metal and HAZ of S30432 steel side differed little. Furthermore, more layer number and less heat input decreased the peak value of the tensile residual stress on welded metal and S30432 steel side, but had little effect on the residual stress in T92 steel side.
机译:化石发电厂通常使用异种焊接接头来连接马氏体钢部件和奥氏体不锈钢管道系统。这种焊接结构的完整性取决于制造过程中产生的残余应力。本文采用有限元方法研究了T92钢和S30432钢之间异种焊管的残余应力特性。此外,研究了热量输入,凹槽形状和层数对残余应力分布的影响,以找到降低残余应力的方法。数值结果表明,异种焊接接头T92钢侧热影响区(HAZ)的环向和轴向应力具有明显的梯度。通过减小槽角,T92钢一侧的环向和轴向应力峰值大大降低,而S30432钢一侧的焊接金属和HAZ峰值却几乎没有变化。此外,增加层数和减少热量输入会降低焊接金属和S30432钢侧的拉伸残余应力的峰值,但对T92钢侧的残余应力影响很小。

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