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Numerical evaluation of temperature field and residual stresses in an API 5L X80 steel welded joint using the finite element method

机译:使用有限元方法对API 5L X80钢焊接接头中的温度场和残余应力进行数值评估

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摘要

Metallic materials undergo many metallurgical changes when subjected to welding thermal cycles, and these changes have a considerable influence on the thermo-mechanical properties of welded structures. One method for evaluating the welding thermal cycle variables, while still in the project phase, would be simulation using computational methods. This paper presents an evaluation of the temperature field and residual stresses in a multipass weld of API 5L X80 steel, which is extensively used in oil and gas industry, using the Finite Element Method (FEM). In the simulation, the following complex phenomena were considered: the variation in physical and mechanical properties of the material as a function of the temperature, welding speed and convection and radiation mechanisms. Additionally, in order to characterize a multipass weld using the Gas Tungsten Arc Welding process for the root pass and the Shielded Metal Arc Welding process for the filling passes, the analytical heat source proposed by Goldak & Chakravarti was used. Also we were able to analyze the influence of the mesh refinement in the simulation results. The findings indicated a significant variation of about 50% in the peak temperature values. Furthermore, changes were observed in terms of the level and profile of the welded joint residual stresses when more than one welding pass was considered.
机译:金属材料在经受焊接热循环后会发生许多冶金学变化,这些变化对焊接结构的热机械性能有很大影响。一种评估焊接热循环变量的方法(仍处于项目阶段)将是使用计算方法进行仿真。本文介绍了使用有限元方法(FEM)对API 5L X80钢的多道次焊缝的温度场和残余应力的评估,该焊缝在石油和天然气行业广泛使用。在模拟中,考虑了以下复杂现象:材料的物理和机械性能随温度,焊接速度以及对流和辐射机理的变化。此外,为了表征根焊道的气体钨极电弧焊工艺和填充焊道的屏蔽金属电弧焊工艺的多道次焊缝,使用了Goldak&Chakravarti提出的分析热源。我们还能够分析网格细化对仿真结果的影响。这些发现表明峰值温度值有大约50%的显着变化。此外,当考虑多于一次焊接道次时,在焊接接头残余应力的水平和轮廓方面观察到变化。

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