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Experimental and Numerical Analysis of Formation Manner of Characteristic Wavy Morphology in Impact Welded Similar- and Dissimilar-Metal Plates

机译:焊接焊接相似兼隔离金属板的特征波状形态的形成方式实验与数值分析

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The characteristic wavy interface was observed in the impact welded similar- and dissimilar-aluminum lap joints. In the present study, effects of impact conditions such as collision velocity, collision angle and materials combination on the interface morphology were investigated. The numerical simulations of the oblique collision between metal plates were performed by using smoothed particle hydrodynamic (SPH) method. The simulation could visualize the formation process of the wavy interface successfully. The wave size increased with increasing collision velocity. The interface of similar-metal joint exhibited the well-proportioned sinusoidal morphology. On the other hand, that of dissimilar joint was asymmetric wave with vortices. Occurrence of two different interface instabilities at the collision point is plausible, and the density difference is considered to control which one of them is dominant. Various joints were also fabricated by magnetic pulse welding and explosive welding. Their interface morphology agreed well with the simulation results.
机译:在焊接的相似和不同的铝圈接头中观察到特征波浪界面。在本研究中,研究了诸如碰撞速度,碰撞角和材料对界面形态的碰撞速度,碰撞角和材料组合的影响。通过使用平滑的颗粒流体动力学(SPH)方法进行金属板之间倾斜碰撞的数值模拟。模拟可以成功可视化波浪接口的形成过程。波浪尺寸随着碰撞速度的增加而增加。类似金属关节的界面表现出符合良好的正弦形态。另一方面,不同的关节与涡流的不对称波。在碰撞点处发生两个不同的接口稳定性是合理的,并且浓度差被认为是控制其中一个是主导的。通过磁脉冲焊接和爆炸焊接也制造各种接头。它们的界面形态与模拟结果很好。

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