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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Effects of pin thread on the in-process material flow behavior during friction stir welding: A computational fluid dynamics study
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Effects of pin thread on the in-process material flow behavior during friction stir welding: A computational fluid dynamics study

机译:销线对摩擦搅拌焊接过程中的工艺流动行为的影响:计算流体动力学研究

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摘要

Pin thread is one of the most common geometrical features for the friction stir welding (FSW) tools. The main purpose of employing the pin thread is to improve the in-process material flow behaviors during FSW. However, it has not been fully understood how exactly the pin thread influences the material flow because of the lack of in-process observation. In this study, we aim to analyze the effect of pin thread on the in-process material flow during FSW of an Al-Mg-Zn alloy by using numerical simulation based on computational fluid dynamics (CFD). In our numerical simulation, the transient rotation of the threaded pin is implemented explicitly via fully transient control of the zone motion, and the mechanical interaction at the tool-workpiece interface is considered via the recent developed shear-stress-based frictional boundary condition. The numerical simulation has been validated by the experimental measured temperatures at 8 different locations, the distribution of marker materials and the geometry of deformation zone in the weld. Based on the numerical simulation results, three effects of the pin thread on the material flow have been elucidated. First, accelerated flow velocity and enhanced strain rate is induced owing to the use of the pin thread, which is attributed to the fact that the interfacial sticking is preferable inside the thread groove opening. Second, the pin thread has an effect to trap material in the high-velocity zone inside the thread groove opening, which causes a many-circle flow pattern around the threaded pin. Third, the pin thread contributes to a vertical pressure gradient, which is important for the in-process material transfer from the top to the bottom. The approaches and concepts in this study can be applied for further fundamental investigation of FSW and the computer aided design of the welding tools.
机译:引脚线是摩擦搅拌焊接(FSW)工具的最常见的几何特征之一。采用引脚线程的主要目的是在FSW期间改善工艺内部物流行为。然而,由于缺乏过程观察,彼此引脚线程如何影响材料流动的究竟是多么理解。在这项研究中,我们的目的是通过使用基于计算流体动力学(CFD)的数值模拟来分析Al-Mg-Zn合金的FSW过程中销线对工艺内材料流动的影响。在我们的数值模拟中,螺销的瞬态旋转通过区域运动的完全瞬态控制明确地实现,并且通过最近的显影剪切应力的摩擦边界条件进行了刀具工件接口的机械相互作用。通过8个不同位置的实验测量温度,标记材料分布和焊缝变形区的几何形状的实验测量温度验证了数值模拟。基于数值模拟结果,销线对材料流动的三种效果已经阐明。首先,由于销螺纹而引起加速的流速和增强的应变速率,这归因于螺纹槽开口内部优选界面粘附的事实。其次,销线具有在螺纹槽开口内的高速区内捕获材料的效果,这导致螺纹销周围的许多圆形流动图案。第三,销线有助于垂直压力梯度,这对于从顶部到底部的工艺材料转移很重要。本研究的方法和概念可用于进一步的FSW基础调查和焊接工具的计算机辅助设计。

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