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Numerical analysis of the dwell phase in friction stir welding and comparison with experimental data

机译:搅拌摩擦焊停留相的数值分析及与实验数据的比较

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摘要

Finite element modelling of material flow is used to understand physical phenomena occurring during the dwell phase of friction stir welding (FSW) of thin sheets made of 7075 aluminium alloy. Numerical results are compared to reference experimental data including torque measurements and metallographic observations made at different tool rotational speeds. The effects of the material constitutive parameters and the heat transfer coefficient between the welded sheet and the anvil backing are identified. The model is also used to study the contact at the tool/workpiece interface. Comparison between the experimental and calculated torques shows that the contact condition depends on tool rotational speed. This result is supported by the differences between nugget grain size and nugget shape evolutions obtained with different rotational speed.
机译:材料流动的有限元建模用于了解在用7075铝合金制成的薄板的摩擦搅拌焊接(FSW)的保压阶段中发生的物理现象。将数值结果与参考实验数据进行比较,这些参考实验数据包括在不同工具转速下进行的扭矩测量和金相观察。确定了材料本构参数和焊接板与砧底之间的传热系数的影响。该模型还用于研究工具/工件界面上的接触。实验扭矩和计算扭矩之间的比较表明,接触条件取决于工具转速。该结果由在不同转速下获得的熔核晶粒尺寸和熔核形状演变之间的差异所支持。

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