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Assessment of parameters windows and tool pin profile on mechanical property and microstructural morphology of FSWed AA2014 joints

机译:评估FSWed AA2014接头的力学性能和微结构形态的参数窗口和工具销轮廓

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The role of optimized parameters in deciding the qualities of the friction stir welded joint of 2014 aluminium alloy interms of the mechanical properties and microstructural features was investigated in this research. A wide range of processparameters viz: tool shoulder diameter, tool pin profile, plunge depth, tool rotation speed and welding speed wereselected and their individual effects on the tensile as well as microstructural properties variations were studied in detail.Out of four various selected tool pin profiles the excellent mechanical as well as microstructural properties of the squarepin (SQ) tool are due to the unique stirring effect by the pulsating action of the sharp edge of the pin and metal propagationprocess at the stir area with incorporation with the tool rotation as well as welding speed during the friction stirwelding. The SQ pin tool of 24 mm shoulder diameter with a plunge depth of 0.06 mm and tool rotating at 815 rev/mmwith welding performed at a speed of 63 mm/min yielded the best quality joint. The ultimate tensile strength is around86% of the base metal (BM) with excellent metallurgical characteristics contributed by the 84% finer grains than theBM ensured from the detail microstructural analysis of the weld bead. The metallurgical study includes the variations inthe grain size at the nugget zone with respect to the selected process parameters as well. Fractography of the weldedspecimen reveals a ductile and transgranular mode with cup and cone structures on the counterpart.
机译:优化参数在确定2014铝合金搅拌摩擦焊接头质量中的作用在这项研究中对机械性能和微观结构特征进行了研究。广泛的过程参数:工具肩直径,工具销轮廓,切入深度,工具旋转速度和焊接速度分别为选择了它们,并研究了它们对拉伸以及微观结构性能变化的影响。在四种选择的工具销轮廓中,方型具有出色的机械和微观结构性能销(SQ)工具是由于销的尖锐边缘的脉冲作用和金属扩散而产生的独特搅拌效果在搅拌区域进行加工,并结合工具旋转以及搅拌摩擦期间的焊接速度焊接。 SQ销钉工具,肩部直径为24毫米,切入深度为0.06毫米,工具旋转速度为815转/毫米焊接速度为63 mm / min时,焊接质量最高。极限抗拉强度约为具有84%的细晶粒的晶粒比86%的具有优良冶金特性的贱金属(BM)的晶粒高。BM通过对焊缝的细微组织分析来确保。冶金研究包括相对于所选工艺参数,在熔核区的晶粒尺寸也是如此。焊接断口样本显示出延展的和经颗粒的模式,在对应的部分具有杯和锥结构。

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