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Measuring and modelling residual stresses in butt welded P91 steel pipe including effects of phase transformations

机译:对接P91钢管的残余应力进行测量和建模,包括相变的影响

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Residual stresses in a circumferentially butt welded steel pipe have been measured and numerically predicted. The pipe, containing the circumferential weld, has an outer diameter of 290 mm and a wall thickness of 55 mm, typical of components in power generation plants. An axisymmetric thermomechanical finite element (FE) simulation has been performed to obtain the residual stress field induced by the fusion welding of the pipe, taking solid state phase transformation effects into account and using temperature dependent material property data. Residual stresses have been measured using the X-ray diffraction and deep hole drilling techniques. Good correlation has been demonstrated with the predictions of the FE model. The paper demonstrates that a mixed experimental and numerical approach is useful for determining the residual stress distribution in welded joints.
机译:已经对周向对接焊接钢管中的残余应力进行了测量并进行了数值预测。包含圆周焊缝的管道的外径为290 mm,壁厚为55 mm,这是发电设备中典型的组件。已经进行了轴对称热机械有限元(FE)仿真,以考虑到固态相变效应并使用与温度相关的材料属性数据来获得由管道的熔焊引起的残余应力场。残余应力已使用X射线衍射和深孔钻孔技术进行了测量。有限元模型的预测已经证明了良好的相关性。本文证明了混合实验和数值方法对于确定焊接接头的残余应力分布是有用的。

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