首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Dissimilar friction stir lap welding of aluminum to brass: Modeling of material mixing using coupled Eulerian- Lagrangian method with experimental verifications
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Dissimilar friction stir lap welding of aluminum to brass: Modeling of material mixing using coupled Eulerian- Lagrangian method with experimental verifications

机译:铝的不同摩擦搅拌搭接焊接黄铜:使用耦合欧拉拉格鸟类法模拟材料混合的实验验证

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摘要

The intermetallic compounds formation and inter-material mixing have a critical impact on achieving a sound joint with fine mechanical properties in the case of dissimilar metal friction stir welding. In this investigation formation of intermetallic compounds as well as material flow that results in inter-material mixing during friction stir lap welding of aluminum and brass are studied. First, the 2.5-mm-thick aluminum sheet was laid on the same-thickness brass sheet and then, friction stir lap welding was applied using a tool with 4-mm pin length and 6-mm pin diameter. Next, experimental investigations were performed using scanning electron microscopy, energy-dispersive X-ray spectroscopy, X-ray diffraction, microhardness, and tensile shear test to probe the chemical compositions and intermetallic formation in the stir zone. Moreover, the coupled Eulerian-Lagrangian method is employed to simulate the stir zone formation during the process to further study inter-material mixing. In this method, the workpiece is modeled using Eulerian formulation, while Lagrangian formulation is utilized to model the tool. The model successfully predicts the stir zone formation and inter-material mixing in the aluminum-brass interface. Results shows that by increasing tool rotational speed from 500 to 2000 r/min the amount of inter material mixing significantly increases. Therefore, to achieve a joint with the highest strength in friction stir lap welding of aluminum-brass, the rotational speed should be lowered as much as it can produce defect-free joint.
机译:金属间化合物形成和材料间混合对在不同金属摩擦搅拌焊接的情况下实现具有精细机械性能的声音关节的临界影响。在该研究中,研究了金属间化合物的形成以及导致在铝和黄铜的摩擦搅拌圈焊接期间导致材料间混合的材料流动。首先,将2.5mm厚的铝板铺设在相同厚度的黄铜板上,然后使用具有4mm销长度和6mm销直径的工具施加摩擦搅拌圈焊接。接下来,使用扫描电子显微镜,能量分散X射线光谱,X射线衍射,显微硬度和拉伸剪切试验进行实验研究,以探测搅拌区中的化学成分和金属间形成。此外,采用耦合的Eulerian-Lagrangian方法来模拟过程中的搅拌区形成,进一步研究材料间混合。在该方法中,工件使用欧拉配方进行建模,而拉格朗日配方用于模拟工具。该模型成功地预测了铝 - 黄铜界面中的搅拌区和材料间混合。结果表明,通过从500至2000 r / min增加工具旋转速度,可以显着增加帧间材料混合的量。因此,为了在铝黄铜摩擦搅拌圈焊接中实现具有最高强度的关节,应尽可能降低转速,从而产生无缺陷的关节。

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