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CFD Modelling of Temperature Distribution and Material Flow Investigation During FSW of DH36 Shipbuilding Grade Steel

机译:DH36造船级钢FSW温度分布和材料流动调查的CFD建模

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摘要

A modified heat transfer and material transfer model was investigated for friction stir welding of DH36 steel by considering the Eulerian framework in steady state. During this analysis, temperature-dependent properties of the workpiece and the tool material were used. The material viscosity was modelled as a non-Newtonian viscoplastic fluid depending on the temperature and flow stress. The heat generation at the tool workpiece interface incorporated the partial sticking and partial sliding condition. An asymmetric and skewed temperature distribution at the advancing trailing side was observed. Asymmetry of temperature distribution was increased with an increase in the tool traverse speed. It was observed that the temperature was maximum at the interface between the shoulder and tool, and the peak temperatures decreased non-uniformly along the thickness direction. The results of material flow analysis indicated that the hot plasticized material flew ahead the tool along the retreating side in counter-clockwise direction, passed the tool and got released behind the tool during the welding stage. There existed a swirl region on the advancing side which was highly prone to defect formation. The temperature field and plastic flow field of the computational model matched satisfactorily with the experiment results.
机译:通过考虑稳态欧拉框架,研究了改进的传热和材料转移模型,用于DH36钢的摩擦搅拌焊接。在该分析期间,使用工件的温度依赖性和工具材料。根据温度和流量应力,将材料粘度模拟为非牛顿粘液液​​。工具工件界面处的发热结合了部分粘附和部分滑动条件。观察到推进尾部的不对称和倾斜温度分布。随着刀具横向速度的增加,温度分布的不对称性增加。观察到,温度在肩部和工具之间的界面处最大,并且峰值温度沿厚度方向不均匀地降低。材料流动分析的结果表明,热塑性沿着逆时针方向的后退侧飞过工具,通过该工具并在焊接阶段释放到工具后面。在推进方面存在旋流区域,这非常容易发生缺陷地层。计算模型的温度场和塑料流场与实验结果符合令人满意的。

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