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首页> 外文期刊>Progress in Artificial Intelligence >Microstructure and mechanical properties of Al/steel dissimilar welds fabricated by friction surfacing assisted friction stir lap welding
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Microstructure and mechanical properties of Al/steel dissimilar welds fabricated by friction surfacing assisted friction stir lap welding

机译:Al /钢不同焊缝的微观结构和机械性能通过摩擦表面辅助摩擦搅拌液焊接焊接

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Al/steel dissimilar welds were obtained by friction stir lap welding (FSLW) with an Al interlayer, which was fabricated by friction surfacing (FS). In present study, the tool pin was totally plunged into the Al plate and interlayer without stirring steel, which avoided the tool wear. The Al plate and interlayer were remarkably intermixed as pin length increased. A diffusion layer, instead of the intermetallic layer, was found at the Al/steel interface, indicating the enhanced atomic migration and related interfacial bonding. The maximum failure load of the joints of 2.8 kN was reached when the 2.5 mm pin tool was used. The heterogeneous microstructure, which was caused by the intermixing, was responsible for the fracture, according to the fracture profiles. Necking and dimples were depicted from the fractographies, indicating that the joints were failed by plastic fracture. (C) 2019 The Authors. Published by Elsevier B.V.
机译:通过用Al interlayer摩擦搅拌圈焊接(FSLW)获得Al /钢不同焊缝,其通过摩擦表面(FS)制造。 在本研究中,工具销完全落入Al板和中间层而不搅拌钢,这避免了工具磨损。 作为销长增加,Al板和中间层显着混合。 在Al /钢界面中发现扩散层,代替金属间层,表明增强的原子迁移和相关的界面键合。 当使用2.5毫米销工具时,达到了2.8KN的接头的最大失效负载。 根据裂缝型材,由混合引起的异质微观结构对骨折负责。 从特征中描绘了颈缩和凹坑,表明关节通过塑性骨折失效。 (c)2019年作者。 elsevier b.v出版。

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