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The finite element simulation of the friction stir welding process

机译:搅拌摩擦焊接过程的有限元模拟

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摘要

Solid mechanics-based finite element models and computational procedures are developed to study the flow patterns and the residual stresses in frictional stir welding (FSW). Two-dimensional results of the material flow patterns and the residual stresses are presented. The flow of metal during FSW is investigated using tracer particles. It is shown that the flows on the advancing side and retreating side are different. After several rotations the material which is rotating around the nib sloughs off in its wake of the pin, primarily on the advancing side. The residual stresses of the welded plate are investigated in this analysis. The distribution of the longitudinal residual stress along the direction perpendicular to the welding line is a double feature curve. With the increase of the translational velocity, the maximum longitudinal residual stress can be increased.
机译:开发了基于固体力学的有限元模型和计算程序,以研究搅拌摩擦焊(FSW)中的流动模式和残余应力。给出了材料流动模式和残余应力的二维结果。使用示踪剂颗粒研究FSW期间的金属流动。结果表明,前进侧和后退侧的流量不同。旋转几圈后,围绕笔尖旋转的材料会在销钉尾部脱落,主要在前进侧脱落。在此分析中研究了焊接板的残余应力。沿垂直于焊接线的方向的纵向残余应力的分布是双特征曲线。随着平移速度的增加,最大纵向残余应力可以增加。

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