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首页> 外文期刊>International Journal of Offshore and Polar Engineers >Theoretical Prediction of Welding Distortion Considering Positioning and Gap Between Parts
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Theoretical Prediction of Welding Distortion Considering Positioning and Gap Between Parts

机译:考虑零件间位置和间隙的焊接变形的理论预测

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摘要

The welding distortion of a plate structure during the assembly process is influenced not only by the local shrinkage due to the welding thermal cycle, but also by root gap and misalignment. The former is governed by the heat input. The latter is strongly affected by the welding procedure, such as the welding sequence and the restraint on the parts to be welded. In this research, an elastic FEM is developed to precisely predict the distortion during the assembly process taking these factors into account. It employs the concept of inherent strain and the interface element to account for both the local shrinkage due to welding and the gap and misalignment in the weld joint. The proposed method is applied to study the influence of the welding sequence on structure distortion during the welding assembly.
机译:组装过程中板结构的焊接变形不仅受焊接热循环导致的局部收缩的影响,而且还受根部间隙和未对准的影响。前者由热量输入控制。后者受焊接程序的强烈影响,例如焊接顺序和对待焊接零件的约束。在这项研究中,考虑到这些因素,开发了一种弹性有限元方法,可以精确地预测组装过程中的变形。它采用固有应变和界面元素的概念来解决由于焊接引起的局部收缩以及焊缝中的间隙和未对准问题。该方法用于研究焊接顺序对焊接装配过程中结构变形的影响。

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