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High Effective FE Simulation Methods for Deformation and Residual Stress by Butt Welding of Thin Steel Plates

机译:薄钢板对接焊接变形和残余应力的高效有限元模拟方法

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摘要

In order to propose high effective simulation using finite element method (FEM) for predicting deformation and residual stress generated by one pass butt welding, a series of numerical analyses were carried out. By idealizing the movement of heat source (the instantaneous heat input method), the tendency of welding out-of-plane deformation and the residual stress distribution could be predicted. The computing time was around 9% of that by the precise model with considering the movement of heat source. On the other hand, applicability of two dimensional shell elements instead of generally used three dimensional solid elements was examined. The heat input model with considering the temperature distribution in the thickness direction was proposed for the simulation by using the shell elements. It was confirmed that the welding out-of-plane deformation and residual stress could be predicted with high accuracy by the model with shell elements and the distributed heat input methods. The computing time was around 8% of that by the precise model with solid elements.
机译:为了提出一种使用有限元方法(FEM)进行高效模拟的方法,以预测一次焊缝对接产生的变形和残余应力,进行了一系列数值分析。通过理想化热源的移动(瞬时热输入法),可以预测焊接面外变形和残余应力分布的趋势。考虑到热源的移动,精确模型的计算时间约为该模型的9%。另一方面,研究了二维壳单元而不是通常使用的三维实体单元的适用性。提出了考虑壳体厚度方向温度分布的热输入模型。通过壳单元模型和分布热量输入方法,可以确认焊接面外变形和残余应力可以高精度预测。具有实体元素的精确模型的计算时间约为其的8%。

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