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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Development of friction stir welding technique at right angle (RAFSW) applied on butt joint of AA6061-T6 aluminum alloy
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Development of friction stir welding technique at right angle (RAFSW) applied on butt joint of AA6061-T6 aluminum alloy

机译:AA6061-T6铝合金对接接头(RAFSW)摩擦搅拌焊接技术的研制

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摘要

Friction stir welding (FSW) is a solid-state joining process, which has prominent advantages over common fusion welding methods like MIG welding. However, equipment costs and royalties act as the main barriers to the widespread use of this technique in today’s industry. Thus, developing low-cost FSW techniques could pave the way for potential industrial users. In this research, we are going to characterize and optimize a recently developed FSW technique at right angle (RAFSW) using low-cost three-axis CNC machine tools. To this end, a full study was done to gain a deep insight through the effect of RAFSW process parameters on generated axial forces and tensile properties of AA6061-T6 butt-welded flat bars of 6.35?mm thick. Experiment planning and modeling of the results used Taguchi design of experiments method and artificial neural network modeling respectively. From these models, an efficient working window of process parameters has been established so that CNC machines with minimized capacity and stiffness can produce high-quality welds repeatedly. After natural aging, the ultimate tensile strength reached a maximum of 253?MPa and stays above 247?MPa within the working window. Moreover, the robustness of the technique and the effect of artificial aging on the strongest samples have been evaluated. We found that the ultimate tensile strength of artificially aged samples attained 300?MPa. Finally, microstructure images and micro-hardness measurements of the strongest welded samples complete the analysis. The outcomes of this research have a great impact on making the recently proposed RAFSW technique reliable for industrial users.
机译:摩擦搅拌焊接(FSW)是固态连接过程,其与MIG焊接等常见熔接方法相比具有突出的优势。然而,设备成本和特许权使用费用作为在当今行业中广泛使用这种技术的主要障碍。因此,开发低成本的FSW技术可以为潜在的工业用户铺平道路。在这项研究中,我们将使用低成本三轴CNC机床以直角(RAFSW)为特征和优化最近开发的FSW技术。为此,完成了完整的研究,通过Rafsw工艺参数对产生的轴向力和拉伸性能的厚度为6.35Ωmm的AA6061-T6对接平条的抗拉性性能来进行深度洞察。实验规划和建模结果,分别用实验方法和人工神经网络建模的模拟。从这些模型中,已经建立了一个有效的工艺参数的工作窗口,使得具有最小化容量和刚度的CNC机器可以反复产生高质量的焊缝。在天然老化之后,最终拉伸强度最多达到253μm≤MPa并保持在工作窗口内的247℃以上。此外,已经评估了技术的鲁棒性和人工老化对最强样品的影响。我们发现人工老化样品的最终拉伸强度达到300μmβMPa。最后,最强焊接样品的微观结构图像和微硬度测量完成了分析。这项研究的结果对使最近提出的RAFSW技术对工业用户可靠的影响很大。

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