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首页> 外文期刊>Journal of Materials Processing Technology >Numerical determination of residual stress in friction stir weld using 3D-analytical model of stir zone
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Numerical determination of residual stress in friction stir weld using 3D-analytical model of stir zone

机译:搅拌区3D解析模型数值模拟搅拌摩擦焊残余应力

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摘要

Heat generation due to plastic work is the dominating term during the steady state friction stir welding (FSW) process. Based on this phenomenon a 3D-analytical model of the stir zone around the FSW tool pin has been developed. In this model, the friction force during steady state FSW process has been neglected as the material in this zone is plasticized and it has undergone plastic deformation rather than inducing friction to the tool pin boundary. The 3D-analytical model has been used for FE analysis to predict heat distribution and based on this thermal history the residual stress distribution in the stir zone, heat affected zone and the base metal (Al6061-T6) were predicted and found reasonable agreement with the experimentally measured values.
机译:在稳态摩擦搅拌焊(FSW)过程中,塑性工作产生的热量是主要的术语。基于此现象,已开发出FSW工具销周围的搅拌区的3D分析模型。在该模型中,由于在该区域中的材料被塑化并且其经历了塑性变形而不是在工具销边界处产生摩擦,因此在稳态FSW过程中的摩擦力已被忽略。 3D分析模型已用于有限元分析以预测热分布,并基于此热历史,预测了搅拌区,热影响区和贱金属(Al6061-T6)中的残余应力分布,并发现与残余应力合理一致。实验测量值。

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