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Welding distortion prediction with elastic FE analysis and mitigation practice in fabrication of cantilever beam component of jack-up drilling rig

机译:顶升式钻机悬臂梁构件制造中的弹性有限元分析与变形实践的焊接变形预测

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摘要

How to predict and mitigate the welding distortion in fabrication of large offshore structures such as jack-up drilling rig, is always an essential engineering problem. In general, welding distortion can be estimated beforehand with experimental measurement of mock-up or numerical computation, and then practical techniques will be carried out to correct the possible welding distortion in the actual fabrication. In this paper, the possible welding distortion during the fabrication of I section welded structure in cantilever beam of jack-up drilling rig was studied with prediction and mitigation. First, an elastic FE analysis was employed, in which (a) the whole examined welded structure was meshed by coarse shell elements; (b) welding inherent deformations of typical welded joints were evaluated with thermal elastic-plastic FE analysis, and will be applied to the welding lines as load; (c) interface element was used to represent the fitting procedure before full welding. In order to eliminate these predicted welding distortions, some mitigation practices such as application of inverse distortion, optimization of welding sequence and constraint methods, were conducted and examined. In particular, welding sequence will intensively influence the final dimensional accuracy via straightening in fitting procedure and updated stiffness of current main welded structure.
机译:在大型海上结构(如自升式钻机)的制造中,如何预测和减轻焊接变形始终是必不可少的工程问题。通常,可以通过模型或数值计算的实验测量来预先估计焊接变形,然后将执行实际技术以校正实际制造中可能的焊接变形。通过预测和缓解措施,研究了自升式钻机悬臂梁工字型焊接结构制造过程中可能出现的焊接变形。首先,采用弹性有限元分析,其中(a)整个检查的焊接结构均由粗糙的壳单元啮合; (b)通过热弹塑性有限元分析评估了典型焊接接头的焊接固有变形,并将其作为载荷应用于焊接线; (c)在完全焊接之前,使用界面元件表示装配过程。为了消除这些预测的焊接变形,进行了一些减缓措施,例如应用反向变形,优化焊接顺序和限制方法。尤其是,焊接顺序将通过装配过程中的拉直和当前主要焊接结构的刚度更新而强烈影响最终尺寸精度。

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