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Finite Element Analysis of Modeling Residual Stress Distribution in All-position Duplex Stainless Steel Welded Pipe

机译:全位置双相不锈钢焊管残余应力分布建模的有限元分析

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On the basis of the thermal-elastic-plastic theory, a three-dimensional finite element numerical simulation is performed on the girth welded residual stresses of the duplex stainless steel pipe with ANSYS nonlinear finite element program for the first time. Three-dimensional FEM using mobile heat source for analysis transient temperature field and welding stress field in circumferential joint of pipes is founded. Distributions of axial and hoop residual stresses of the joint are investigated. The axial and the hoop residual stresses at the weld and weld vicinity on inner surface of pipes are tensile, and they are gradually transferred into compressive with the increase of the departure from the weld. The axial residual stresses at the weld and weld vicinity on outer surface of pipes is compressive while the hoop one is tensile. The distributions of residual stresses compared positive-circle with negative-circle show distinct symmetry. These results provide theoretical knowledge for the optimization of process and the control of welding residual stresses.
机译:基于热弹塑性理论,首次利用ANSYS非线性有限元程序对双相不锈钢管的环缝焊接残余应力进行了三维有限元数值模拟。建立了利用移动热源进行三维三维有限元分析的管道周向瞬态温度场和焊接应力场。研究了接头的轴向和环向残余应力分布。管道内表面焊缝和焊缝附近的轴向残余应力和环向残余应力是拉伸应力,随着离开焊缝的增加,它们逐渐转变为压缩应力。管道外表面焊缝和焊缝附近的轴向残余应力是压缩应力,而箍环是拉伸应力。正圆与负圆相比,残余应力的分布表现出明显的对称性。这些结果为优化工艺和控制焊接残余应力提供了理论知识。

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