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FEM Analysis of Joint Interface Formation in Magnetic Pressure Seam Welding

机译:电磁压力缝焊接接头界面形成的有限元分析

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The magnetic pressure seam welding is one of the candidate methods to join thin sheet smart and multifunctional materials. In this research, to examine the mechanism of magnetic pressure welding from a dynamic viewpoint, numerical simulation of the impact was carried out by using a commercial Euler-Lagrange coupling software MSC.Dytran (MSC.Software) as a first step of the computational studies, where the joint between Fe and Al was employed according to the previous experimental researches. From the serial numerical results, it was found that the increase of temperature at the joint interface was not enough to melt Al or Fe in the range of collision velocity and angle studied in this report. Also, it was revealed that the very large mean stress occurred at the interface which could be considered as the pressure at joint interface and Al moved with high velocity along the interface. Moreover, it was found that there were two patterns of plastic strain distribution near the joint interface depending on the collision velocity and collision angle. Finally, it can be concluded that the plastic strain pattern might be related to the success of magnetic pressure seam welding.
机译:磁力缝焊是连接薄板智能多功能材料的候选方法之一。在这项研究中,为了从动态的角度检查电磁压力焊接的机理,通过使用商业的Euler-Lagrange耦合软件MSC.Dytran(MSC.Software)作为计算研究的第一步,对冲击进行了数值模拟。 ,根据先前的实验研究,采用了Fe和Al之间的连接点。从一系列数值结果中发现,在本报告研究的碰撞速度和角度范围内,接头界面处的温度升高不足以熔化Al或Fe。另外,还发现在界面处产生很大的平均应力,这可以认为是接头界面处的压力和Al沿界面高速移动的原因。此外,发现根据碰撞速度和碰撞角度,在接头界面附近存在两种塑性应变分布模式。最后,可以得出结论,塑性应变模式可能与磁压缝焊接的成功有关。

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