首页> 外文期刊>International Journal of Pressure Vessels and Piping >Three-dimensional finite element analysis to predict the effects of SAW process parameters on temperature distribution and angular distortions in single-pass butt joints with top and bottom reinforcements
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Three-dimensional finite element analysis to predict the effects of SAW process parameters on temperature distribution and angular distortions in single-pass butt joints with top and bottom reinforcements

机译:三维有限元分析,预测SAW工艺参数对顶部和底部钢筋单程对接接头温度分布和角变形的影响

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摘要

Achieving adequate top and bottom reinforcement is important to minimize angular distortions in single-pass submerged arc welded (SAW) butt joints. This is achieved in the present work by using a reusable flux-filled backing strip and proper SAW process parameters without resorting to costly distortion mitigation techniques. The butt joints were made without edge (square butts) preparation. The process was also modeled by using three-dimensional finite element analysis by incorporating the top and bottom reinforcements into the modeling. Filler material deposition was also simulated. Temperature distributions and angular distortions obtained from the modeling closely matched with the experimental values. Thus, the cost effective experimental methodology established in the present work can be utilized for minimizing angular distortions in SAW square butts. The modeling methodology adopted can be used for predicting the angular distortions in SAW square butts with top and bottom reinforcements.
机译:为使单道埋弧焊(SAW)对接接头的角度变形最小化,实现足够的顶部和底部钢筋很重要。在当前工作中,这是通过使用可重复使用的填充有助焊剂的衬条和适当的SAW工艺参数来实现的,而无需诉诸昂贵的减轻失真的技术。对接接头没有边缘(方对接)准备。还通过使用三维有限元分析对过程进行建模,方法是将顶部和底部钢筋合并到模型中。还模拟了填充材料的沉积。从模型获得的温度分布和角度畸变与实验值紧密匹配。因此,在当前工作中建立的具有成本效益的实验方法可以用于最小化SAW方头中的角度变形。所采用的建模方法可用于预测带有顶部和底部钢筋的SAW方形对接中的角度变形。

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