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首页> 外文期刊>Journal of Pressure Vessel Technology >Finite Element Prediction of Residual Stress Distributions in a Multipass Welded Piping Branch Junction
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Finite Element Prediction of Residual Stress Distributions in a Multipass Welded Piping Branch Junction

机译:多遍焊接管道分支结中残余应力分布的有限元预测

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摘要

Piping branch junctions and nozzle attachments to main pressure vessels are common engineering components used in the power, oil and gas, and shipbuilding industries amongst others. These components are usually fabricated by multipass welding. The latter process is known to induce residual stresses at the fabrication stage, which can have severe adverse effects on the in-service behavior of such critical components. It is thus desirable if the distributions of residual stresses can be predicted well in advance of welding execution. This paper presents a comprehensive study of three dimensional residual stress distributions in a stainless steel tee branch junction during a multipass welding process. A full three dimensional thermomechanical finite element model has been developed for this purpose. A newly developed meshing technique has been used to model the complex intersection areas of the welded junction with all hexahedral elements. Element removal/reactivate technique has been employed to simulate the deposition of filler material. Material, geometry, and boundary nonlinearities associated with welding were all taken into account. The analysis results are presented in the form of stress distributions circumferentially along the weld line on both run and branch pipes as well as at the run and branch cross sections. In general, this computational model is capable of predicting three dimensional through-thickness welding residual stress, which can be valuable for structural integrity assessments of complex welded geometries.
机译:管道分支连接点和主压力容器的喷嘴附件是电力,石油和天然气以及造船等行业中常用的工程组件。这些部件通常通过多道次焊接来制造。已知后一种方法会在制造阶段引起残余应力,这会对此类关键组件的使用行为产生严重的不利影响。因此,期望能够在焊接执行之前很好地预测残余应力的分布。本文对多道焊接过程中不锈钢三通分支结中的三维残余应力分布进行了全面研究。为此,已经开发了一个完整的三维热机械有限元模型。一种新开发的网格划分技术已被用来模拟所有六面体单元的焊接连接的复杂交叉区域。元素去除/重新激活技术已被用来模拟填充材料的沉积。与焊接相关的材料,几何形状和边界非线性都已考虑在内。分析结果以在管道和支管上以及管道和支管横截面上沿焊接线沿周向的应力分布的形式表示。通常,该计算模型能够预测三维厚度范围的焊接残余应力,这对于复杂焊接几何结构的结构完整性评估而言可能是有价值的。

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