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Numerical Analysis of Wavy Interface Formation and Successive Temperature Change in Magnetic Pulse Welded Al/Cu Joint

机译:磁脉冲焊接Al / Cu关节波浪界面形成和连续温度变化的数值分析

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摘要

Magnetic pulse welding (MPW) which is one of the impact welding methods is suitable for a wide variety of combinations of similar and dissimilar metals. The flyer plate is accelerated by electromagnetic force and collided to the parent plate. A characteristic wavy interface is formed. The impact velocity and impact angle of the flyer plate during impact are important parameters which affect the interface morphology. In the case of dissimilar metals (e.g. Al/Cu, Al/Fe), the intermediate layer (such as intermetallic compound (IMC)) is formed by wavy interface formation and local temperature increase. The intermediate layer often decreases the bonding strength. Wavy interface formation mechanism and temperature increase at the joint interface should be investigated in order to obtain the dissimilar metal joint with high bonding strength. In this study, the impact velocity and impact angle of the flyer plate were obtained by using ANSYS Emag-Mechanical. Based on the obtained impact velocity and impact angle of the flyer plate in the MPW, the wavy interface formation and temperature change were reproduced by using ANSYS Autodyn for solving non-liner dynamics problems. Al sheets and Cu sheets were joined by the MPW. The joint interface was observed by OM and SEM and compared to the simulation result.
机译:作为冲击焊接方法之一的磁脉冲焊接(MPW)适用于各种各样的类似和不同金属的组合。传单板通过电磁力加速并与母板碰撞。形成特征波浪界面。撞击过程中传单板的冲击速度和冲击角是影响界面形态的重要参数。在不同金属(例如Al / Cu,Al / Fe)的情况下,通过波状界面形成和局部温度升高形成中间层(例如金属间化合物(IMC))。中间层通常会降低粘合强度。应研究波浪界面形成机制和接头接口的温度升高,以获得具有高粘合强度的不同金属接头。在该研究中,通过使用ANSYS OFAM-CHECALLIC来获得传单板的冲击速度和冲击角。基于MPW中获得的传单板的产生的冲击速度和冲击角,通过使用ANSYS AUTODYN来求解非衬里动力学问题来再现波浪界面形成和温度变化。通过MPW连接Al板和Cu板。通过OM和SEM观察联合接口,与模拟结果相比。

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