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Structure and Mechanical Properties of Friction Stirred Beads of 6082-T6 Al Alloy and Pure Copper

机译:6082-T6铝合金与纯铜摩擦搅拌珠的结构与力学性能

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Friction stir welding (FSW) is a quite recent welding method which takes advantage of being performed in the solid state. Compared with the usual welding processes, it therefore presents many benefits such as a lower heat-input, a reduction of residual stresses and an elimination of the solidification defects etc.. Up to now, it has essentially been applied to aluminium alloys and far more recently to a small number of bimaterials.The present study deals with three kinds of beads between pure copper and a 6082 aluminium alloy. Both materials were butt joined by FSW. The welds differ by the location of the tool which was placed either at the interface between the two metals or on the copper or the 6082 side of this surface. Their structure was characterized at a multi-scale level by using a number of techniques. Tensile and microhardness tests were also performed. The tool place is shown to govern the microstructure and the ensuing mechanical behaviour of the weld. Its influence on the plastic flow with its repercussions on ⅰ) welding defects and ⅱ) mechanical properties is going to be demonstrated. Some ways of improvement of the welding process will finally be suggested.
机译:搅拌摩擦焊(FSW)是一种很新的焊接方法,它利用了在固态状态下进行的优势。因此,与通常的焊接工艺相比,它具有许多优点,例如,较低的热输入,减少的残余应力和消除了凝固缺陷等。到目前为止,它已基本上应用于铝合金,还有更多的用途。最近要使用少量双材料。 本研究涉及纯铜和6082铝合金之间的三种珠子。两种材料均由FSW对接。焊缝因工具的位置而异,该工具放置在两种金属之间的界面处,或者位于该表面的铜或6082侧。通过使用多种技术,可以在多尺度级别上对它们的结构进行表征。还进行了拉伸和显微硬度测试。所示的工具位置可控制焊缝的微观结构和随之产生的机械性能。将证明其对塑料流动的影响以及对ⅰ)焊接缺陷和ⅱ)力学性能的影响。最后将提出一些改进焊接工艺的方法。

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