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A numerical comparison of the flow behaviour in Friction Stir Welding (FSW) using unworn and worn tool geometries

机译:使用未磨损和磨损刀具几何形状的摩擦搅拌焊(FSW)中流动行为的数值比较

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摘要

The tool is a key component in the Friction Stir Welding (FSW) process, but the tool degrades and changes shape during use; however, only a limited number of experimental studies have been undertaken in order to understand the effect that worn tool geometry has on the material flow and resultant weld quality. In this study, a validated model of the FSW process is generated using the CFD software FLUENT, with this model then being used to assess the detail of the differences in the flow behaviour, mechanically affected zone (MAZ) size and strain rate distribution around the tool for both unworn and worn tool geometries. Comparisons are made at two different tool rotational speeds using a single weld traverse speed. The study shows that there are significant differences in the flow behaviour around and under the tool when the tool is worn. This modelling approach can therefore be used to improve understanding of the effective limits of tool life for welding, with a specific outcome of being able to predict and interpret the behaviour when using specific weld parameters and component geometry without the need for experimental trials.
机译:该工具是摩擦搅拌焊(FSW)过程中的关键组件,但在使用过程中该工具会退化并改变形状。但是,为了了解磨损的刀具几何形状对材料流动和最终焊接质量的影响,仅进行了有限的实验研究。在这项研究中,使用CFD软件FLUENT生成了FSW过程的经过验证的模型,然后将该模型用于评估流动特性,机械影响区(MAZ)大小以及绕管周围应变率分布差异的细节。适用于未磨损和磨损几何形状的刀具。使用单个焊缝移动速度以两种不同的工具转速进行比较。研究表明,工具磨损时,工具周围和下方的流动行为存在显着差异。因此,该建模方法可用于增进对焊接工具寿命有效限制的了解,其特定结果是,在使用特定焊接参数和部件几何形状时,无需进行试验即可预测和解释行为。

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