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Experimental and numerical analysis of the formation behavior of intermediate layers at explosive welded Al/Fe joint interfaces

机译:爆炸焊接Al / Fe接头界面中间层形成行为的实验和数值分析

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摘要

The microstructural characteristics and formation mechanism of intermediate layers at the explosive welded Al/Fe wavy interface were investigated by experimental and numerical analyses. Two types of intermediate layers were obtained at the wavy joint interface produced at an impact velocity of 750 m/s and an impact angle of 15 degrees. The layer that was formed in the tail-side included the area showing a dendritic structure consisting of Al3Fe and Al5Fe2. This indicated that local melting occurred in the area. In contrast, the layer that was formed in the front-side showed no evidence of melting. The formation behavior and temperature change at the Al/Fe interface formed by an oblique collision were simulated by the smoothed particle hydrodynamics (SPH) method. The simulation results revealed that on the tail-side, a mixture of Al and Fe particles formed and a large local temperature increase exceeding the melting temperature of Fe and Al occurred. The front-side showed a small temperature increase. The composition ratio of AI and Fe, and the temperature distribution at the joint interface calculated by the SPH simulation provided plausible explanations for the formation of two types of intermediate layers in each position. (C) 2016 The Society of Manufacturing Engineers. Published by Elsevier Ltd. All rights reserved.
机译:通过实验和数值分析研究了爆炸焊接Al / Fe波状界面中间层的组织结构和形成机理。在以750m / s的冲击速度和15度的冲击角产生的波浪形接合界面处获得两种类型的中间层。在尾侧形成的层包括显示出由Al 3 Fe和Al 5 Fe 2组成的树枝状结构的区域。这表明该地区发生了局部融化。相反,在正面形成的层没有显示出熔化的迹象。用光滑粒子流体动力学(SPH)方法模拟了斜碰撞形成的Al / Fe界面的形成行为和温度变化。模拟结果表明,在尾侧,形成了Al和Fe颗粒的混合物,并且发生了超过Fe和Al的熔化温度的较大的局部温度升高。正面显示出很小的温度升高。 AI和Fe的组成比,以及通过SPH模拟计算得出的接头界面处的温度分布,为在每个位置形成两种类型的中间层提供了合理的解释。 (C)2016年制造工程师学会。由Elsevier Ltd.出版。保留所有权利。

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