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Influence of plate position, tool offset and tool rotational speed on mechanical properties and microstructures of dissimilar Al/Cu friction stir welding joints

机译:板位置,工具偏移和工具转速对异种Al / Cu摩擦搅拌焊接接头的力学性能和显微组织的影响

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In this research, dissimilar friction stir welding between aluminium (Al) and copper (Cu) is investigated. The experimental results indicate that high quality joints can be obtained by placing the Cu plate on the advancing side of the tool rotation. Further improvement of mechanical properties and defect free joints could be obtained under specific critical offset towards the Al side. The maximum ultimate tensile strength of the weld was 95% of the Al base metal and bending angle was around 65 degrees. The Vickers micro-hardness distributions indicate that hardness values increased from Al to Cu side and maximum at the joint interfaces and hardness at the bottom of the nugget zone (NZ) was higher compare to middle and top layers. Broken grains were observed in the fractograph images at nano level. The XRD analysis of intermetallic compounds revealed that percentage of Cu and Al are almost same at the joint center and maximum at 2 mm away from the joint center towards Al and Cu sides, respectively. Line scanning indicated mixed flow of Al/Cu materials throughout the NZ. Microstructural analysis revealed the variation of the grain size in the weld zones and also with the process parameters. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项研究中,研究了铝(Al)和铜(Cu)之间的异种搅拌摩擦焊。实验结果表明,通过将Cu板放置在工具旋转的前进侧可以获得高质量的接头。在朝向Al侧的特定临界偏移下,可以获得机械性能和无缺陷接头的进一步改进。焊缝的最大极限抗拉强度为Al基金属的95%,弯曲角约为65度。维氏显微硬度分布表明,硬度值从Al侧到Cu侧增加,并且在接头界面处达到最大值,并且熔核区(NZ)底部的硬度高于中间层和顶层。在纳米级的分数图像中观察到破碎的晶粒。金属间化合物的XRD分析表明,铜和铝的百分比在接头中心几乎相同,并且在距接头中心朝向Al和Cu侧2 mm处最大。线扫描表明整个NZ中Al / Cu材料混合流动。显微组织分析揭示了焊接区晶粒尺寸的变化以及工艺参数的变化。 (C)2016 Elsevier B.V.保留所有权利。

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